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  <channel>
    <title>SNPP</title>
    <link>https://cwdrupal11.star1.nesdis.noaa.gov/</link>
    <description/>
    <language>en</language>
    
    <item>
  <title>Experimental Eddy Products</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/experimental-eddy-products</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;Experimental Eddy Products&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;The sea surface height team in NOAA’s Laboratory for Satellite Altimetry produces two experimental mesoscale eddy products:&lt;/p&gt;&lt;ul&gt;&lt;li&gt;Multiparameter Eddy Significance Index (MESI)&lt;/li&gt;&lt;li&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER)&lt;/li&gt;&lt;/ul&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;michael.soracco&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2024-08-09T14:34:42-04:00" title="Friday, August 9, 2024 - 14:34" class="datetime"&gt;Fri, 08/09/2024 - 14:34&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2026-03/MESI_v1_multi_global_daily_s20260221_e20260221.png?itok=yoApij8m" width="650" height="362" alt="Example of MESI product [zoomed from global] centered on the Atlantic Ocean." class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
            &lt;div class="clearfix text-formatted field field--name-field-product-description field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;The sea surface height team in NOAA’s Laboratory for Satellite Altimetry produces two experimental mesoscale eddy products:&lt;/p&gt;&lt;ul&gt;&lt;li&gt;Multiparameter Eddy Significance Index (MESI): daily 0.25° x 0.25° global fields of the Multiparameter Eddy Significance Index (MESI), which incorporates Level-3 sea level anomalies (SLA) from NOAA’s LSA, along with Geo-polar sea surface temperatures (SSTs) from NOAA CoastWatch, gap-filled ocean color chlorophyll-a (Chl-a) from NOAA CoastWatch, and sea surface salinity (SSS) from NASA’s Soil Moisture Active Passive (SMAP) mission.&lt;/li&gt;&lt;li&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER): daily mesoscale eddy properties, contours, and trajectories from version 1.0 of the MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER). The MUNSTER product suite is based on the NRT sea level anomaly (SLA) fields produced by NOAA’s LSA, which are also available through NOAA CoastWatch. This product includes the MESI data as a gridded variable. &amp;nbsp;Additionally, the suite will include files for:&lt;ul&gt;&lt;li dir="ltr"&gt;Daily identification of mesoscale anticyclonic and cyclonic eddies, including properties and contours for each eddy. This file is organized by eddy.&lt;/li&gt;&lt;li dir="ltr"&gt;Daily tracking of eddy trajectories over a 7-day period, including properties and contours for each eddy included in the trajectory. This file is organized by trajectory.&lt;/li&gt;&lt;/ul&gt;&lt;/li&gt;&lt;/ul&gt;&lt;h4&gt;&amp;nbsp;&lt;/h4&gt;&lt;h4&gt;Multiparameter Eddy Significance Index (MESI)&lt;/h4&gt;&lt;p&gt;MESI serves as a first look indicator of the potential impact a given mesoscale eddy may have on upper ocean dynamics, with potential implications for nutrient cycling, mixed layer dynamics, and fisheries. Further information about the applications and functions of MESI can be found in Roman-Stork et al., (2023).&amp;nbsp;&lt;/p&gt;&lt;p dir="ltr"&gt;&lt;strong&gt;Algorithm&lt;/strong&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;MESI combines longitudinally normalized values of SLA, eddy kinetic energy derived from satellite altimetry, SST, SSS, and ocean color chlorophyll-a (Equation 1 below). SST and Chl-a data were regridded down to 0.25° x 0.25° from their original, higher resolutions in order to match the gridding of the coarser datasets. The absolute values of SST, SSS, Chl-a, and the log&lt;sub&gt;10&lt;/sub&gt; value of EKE were combined with the normalized value of SLA such that the polarity or sign of SLA is maintained. This format allows for all positive values of MESI to correspond to anticyclonic eddies, or positive SLA values, and all negative values of MESI to correspond to cyclonic eddies, or negative SLA values.&amp;nbsp;&lt;/p&gt;&lt;p class="text-align-center"&gt;MESI =&amp;nbsp;SLA&lt;sub&gt;norm&lt;/sub&gt; * abs(log10(EKE&lt;sub&gt;norm&lt;/sub&gt;)) * abs(SST&lt;sub&gt;norm&lt;/sub&gt;) * abs(SSS&lt;sub&gt;norm&lt;/sub&gt;) * abs(Chla&lt;sub&gt;norm&lt;/sub&gt;)&lt;/p&gt;&lt;p&gt;MESI values greater than +/- 1 are considered to be “high”, and correspond to a high likelihood of a mesoscale eddy having a strong impact on the upper ocean’s circulation and nutrient cycling. MESI values less than +/- 1 are considered to be “low”, and are considered to have a low likelihood of having a mesoscale eddy significantly impact the upper ocean’s circulation.&amp;nbsp;&amp;nbsp;&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;Data Used&amp;nbsp;&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;The SLA and EKE used for MESI were taken from the near real time (NRT) 0.25° x 0.25° Level-3 global fields produced by NOAA’s LSA and available from NOAA CoastWatch (found &lt;a href="https://coastwatch.noaa.gov/cwn/products/sea-level-anomaly-and-geostrophic-currents-multi-mission-global-optimal-interpolation.html"&gt;here&lt;/a&gt;; Scharoo et al., 2013). EKE was calculated from the geostrophic currents included with the SLA product, and a logarithmic value of this calculated EKE was used in the calculation of MESI. SST values used in MESI were taken from the NOAA CoastWatch Geo-Polar night SST product (found&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/cwn/products/noaa-geo-polar-blended-global-sea-surface-temperature-analysis-level-4.html"&gt;here&lt;/a&gt;; Maturi et al., 2017), and this high resolution dataset was regridded onto the 0.25° x 0.25° grid from the SLA and EKE values. Ocean color Chl-a values were obtained from the science quality MSL12 DINEOF gap-filled analysis available from NOAA CoastWatch (found&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/cwn/products/noaa-msl12-ocean-color-science-quality-viirs-snpp.html"&gt;here&lt;/a&gt;; Liu et al., 2019). Like SST, the Chl-a fields used in their calculation were of higher resolution and were regridded to 0.25° x 0.25° for this analysis. The SSS values used in MESI calculations were taken from NASA’s SMAP SSS from NASA’s Jet Propulsion Lab (JPL) V5.0 product that used their Combined Active Passive (CAP) algorithm (original data obtained from PO.DAAC; Fore et al., 2016). SMAP SSS data were not regridded.&amp;nbsp; &amp;nbsp; &amp;nbsp;&amp;nbsp;&lt;/p&gt;&lt;pre&gt;&lt;code class="language-typescript"&gt;Contents of file MESI_v1_multi_global_daily_s20240501_e20240501.nc

Global information:
  Data source:         Satellite data
  Date:                2024/05/01 JD 122
  Time:                00:00:00 UTC
  Scene time:          day/night
  Projection type:     mapped
  Transform ident:     noaa.coastwatch.util.trans.GeographicProjection
  Map projection:      Geographic
  Map affine:          0 0.25 0.25 0 -179.88 -89.88
  Spheroid:            WGS 84
  Origin:              NOAA/NESDIS Center for Satellite Applications and Research (STAR)
  Format:              Java-NetCDF interface (netCDF-4 ucar.nc2.dataset.conv.CF1Convention)
  Reader ident:        noaa.coastwatch.io.CommonDataModelNCReader

Variable information:
  Variable    Type    Dimensions   Units                                Scale   Offset
  ssh         float   720x1440     m                                    -       -
  sst         float   720x1440     K                                    -       -
  sss         float   720x1440     psu                                  -       -
  chlora      float   720x1440     mg m-3                               -       -
  eke         float   720x1440     m2 s-2                               -       -
  mesi        float   720x1440     -                                    -       -
  time        int     1            seconds since 1970-01-01T00:00:00Z   -       -
  latitude    float   720          degrees_north                        -       -
  longitude   float   1440         degrees_east                         -       -&lt;/code&gt;&lt;/pre&gt;&lt;h4&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER)&lt;/h4&gt;&lt;p&gt;&lt;strong&gt;Algorithm&amp;nbsp;&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER) Algorithm MUNSTER uses an algorithm adapted from Chaigneau et al., (2008, 2009) and Peglaisco et al., (2015). It employs a closed contour method applied to the daily gridded NRT SLA fields produced by NOAA’s LSA. The closed contour method locally identifies maxima and minima within the filtered SLA fields with a contour interval of 0.1 cm, and the eddy edge is defined as the outermost closed contour around the identified eddy center such that at least 4 grid points are included within the contour. From this analysis, eddy amplitude, radius, area, and location are identified, and then multiple additional properties are calculated. Observations from SST, ocean color Chlorophyll-a, SSS, and MESIv1 are also collocated with the identified eddy.&amp;nbsp;&amp;nbsp;&lt;/p&gt;&lt;p&gt;Eddy trajectories are calculated using SLA fields such that eddy contours at time&amp;nbsp;n and time&amp;nbsp;n+1&amp;nbsp;are found to overlap. When no overlap is found, the eddy is considered to have dissipated. If multiple successive contours overlap with a given contour, a cost function is employed that uses amplitude, radius, and EKE to calculate splitting and merging events. The cost function seeks to minimize the result, and the contour with the smaller result is chosen (Pegliasco et al., 2015).&amp;nbsp;&amp;nbsp;&lt;/p&gt;&lt;p&gt;Eddy properties, or characteristics, are calculated as mean values of tracked variables across an eddy on a given day. The location of the eddy center and eddy centroid are provided along with a variety of properties, including eddy amplitude, radius, area, EKE, the Okubo-Weiss parameter, divergence, mean geostrophic currents, SST, SSS, Chl-a, and the Multiparameter Eddy Significance Index (MESI). More information about MESI can be found in Roman-Stork et al., (2023) or on this product page (above).&amp;nbsp;&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;Data Used&amp;nbsp;&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;The SLA and EKE used for MUNSTER were taken from the near real time (NRT) 0.25° x 0.25° Level-3 global fields produced by NOAA’s LSA and available from NOAA CoastWatch (found &lt;a href="https://coastwatch.noaa.gov/cwn/products/sea-level-anomaly-and-geostrophic-currents-multi-mission-global-optimal-interpolation.html"&gt;here&lt;/a&gt;; Scharoo et al., 2013). EKE was calculated from the geostrophic currents included with the SLA product, and a logarithmic value of this calculated EKE was used in the calculation of MESI. SST values used in MUNSTER were taken from the NOAA CoastWatch Geo-Polar night SST product (found&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/cwn/products/noaa-geo-polar-blended-global-sea-surface-temperature-analysis-level-4.html"&gt;here&lt;/a&gt;; Maturi et al., 2017), and this high resolution dataset was regridded onto the 0.25° x 0.25° grid from the SLA and EKE values. Ocean color Chl-a values were obtained from the science quality MSL12 DINEOF gap-filled analysis available from NOAA CoastWatch (found&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/cwn/products/noaa-msl12-ocean-color-science-quality-viirs-snpp.html"&gt;here&lt;/a&gt;; Liu et al., 2019). Like SST, the Chl-a fields used in their calculation were of higher resolution and were regridded to 0.25° x 0.25° for this analysis. The SSS values used in MUNSTER calculations were taken from NASA’s SMAP SSS from NASA’s Jet Propulsion Lab (JPL) V5.0 product that used their Combined Active Passive (CAP) algorithm (original data obtained from PO.DAAC; Fore et al., 2016). SMAP SSS data were not regridded.&amp;nbsp;&amp;nbsp;&lt;/p&gt;&lt;p&gt;Products&lt;/p&gt;&lt;ul&gt;&lt;li&gt;Daily mesoscale anticyclonic and cyclonic eddy mean properties and eddy contours, organized by eddy&lt;/li&gt;&lt;li&gt;Daily mesoscale anticyclonic and cyclonic eddy trajectories over a 7-day period, organized by trajectory&lt;/li&gt;&lt;/ul&gt;&lt;p&gt;MUNSTER is a threshold-free product, and thus does not exclude low amplitude, or short-lived eddies from its analysis. This product suite is designed to be user-friendly and not require the download of multiple data products, such that numerous quantities used in mesoscale eddy analysis are already contained within the MUNSTER product suite and tracked along with each eddy, including amplitude, radius, are, eddy kinetic energy (EKE), sea surface temperature (SST), and sea surface salinity (SSS), and ocean color chlorophyll-a.&amp;nbsp;&lt;/p&gt;&lt;p&gt;Products distributed by NOAA CoastWatch are divided into MUNSTER I and MUNSTER II datasets where:&lt;/p&gt;&lt;ul&gt;&lt;li&gt;MUNSTER I: &amp;nbsp;NetCDF datasets of daily gridded (2D) and 1D data. &amp;nbsp;These datasets include daily MESI data, eddy locations, and eddy properties and are described within this webpage.&lt;/li&gt;&lt;li&gt;MUNSTER II: &amp;nbsp;NetCDF datasets of multi-day eddy trajectories and inter-relationships. &amp;nbsp;These include eddy locations and properties over the course of a 7-day period, indicating the path of each eddy.&lt;/li&gt;&lt;/ul&gt;&lt;p&gt;Variables stored within the datasets may be single or multi-dimensional. &amp;nbsp;Where appropriate, gridded datasets are defined with Climate-Forecast (CF) Metadata conventions. Gridded data are interoperable with the CoastWatch Utilities:&lt;/p&gt;&lt;pre&gt;&lt;code class="language-typescript"&gt;Contents of file MUNSTER_v1_eddyident_multi_global_daily_s20240530_e20240530.nc
Global information:
  Data source:         Satellite data
  Date:                2024/05/30 JD 151
  Time:                00:00:00 UTC
  Scene time:          day/night
  Projection type:     mapped
  Transform ident:     noaa.coastwatch.util.trans.GeographicProjection
  Map projection:      Geographic
  Map affine:          0 0.25 0.25 0 -179.88 -59.88
  Spheroid:            WGS 84
  Origin:              NOAA/NESDIS Center for Satellite Applications and Research (STAR)
  Format:              Java-NetCDF interface (netCDF-4 ucar.nc2.dataset.conv.CF1Convention)
  Reader ident:        noaa.coastwatch.io.CommonDataModelNCReader
Variable information:
  Variable       Type    Dimensions  Units                              Scale     Offset
  mesi           float   480x1440    -                                  -         -
  Uinside_anti   float   480x1440    m s-1                              -         -
  Vinside_anti   float   480x1440    m s-1                              -         -
  Label_anti     int     480x1440    -                                  -         -
  Uinside_cyclo  float   480x1440    m s-1                              -         -
  Vinside_cyclo  float   480x1440    m s-1                              -         -
  Label_cyclo    int     480x1440    -                                  -         -
  time           int     1           seconds since 1970-01-01T00:00:00Z -         -
  latitude       float   480         degrees_north                      -         -
  longitude      float   1440        degrees_east                       -         -	&lt;/code&gt;&lt;/pre&gt;&lt;p&gt;Additional variables exist within the dataset pertaining to identified eddies. &amp;nbsp;These eddies are defined as cyclonic or anticyclonic. Eddy attributes are assigned to the 1-D dimension:&lt;/p&gt;&lt;pre&gt;&lt;code class="language-typescript"&gt;        num_anticyclones = 2416 ;
        num_cyclones = 2446 ;&lt;/code&gt;&lt;/pre&gt;&lt;p&gt;Variables (only cyclonic shown here) include:&lt;/p&gt;&lt;pre&gt;&lt;code class="language-plaintext"&gt;         float cyclonic_center_lon(num_cyclones) ;
                cyclonic_center_lon:long_name = "longitude of point inside eddy with lowest sla" ;
                cyclonic_center_lon:units = "degrees_east" ;
                cyclonic_center_lon:valid_min = -180. ;
                cyclonic_center_lon:valid_max = 180. ;
        float cyclonic_center_lat(num_cyclones) ;
                cyclonic_center_lat:long_name = "latitude of point inside eddy with lowest sla" ;
                cyclonic_center_lat:units = "degrees_north" ;
                cyclonic_center_lat:valid_min = -90. ;
                cyclonic_center_lat:valid_max = 90. ;
        float cyclonic_centroid_lon(num_cyclones) ;
                cyclonic_centroid_lon:long_name = "longitude of geometric center of eddy" ;
                cyclonic_centroid_lon:units = "degrees_east" ;
                cyclonic_centroid_lon:valid_min = -180. ;
                cyclonic_centroid_lon:valid_max = 180. ;
        float cyclonic_centroid_lat(num_cyclones) ;
                cyclonic_centroid_lat:long_name = "latitude of geometric center of eddy" ;
                cyclonic_centroid_lat:units = "degrees_north" ;
                cyclonic_centroid_lat:valid_min = -90. ;
                cyclonic_centroid_lat:valid_max = 90. ;
        float cyclonic_contour_lon(num_cyclones, max_contour_cyclones) ;
                cyclonic_contour_lon:long_name = "longitude of eddy contour points" ;
                cyclonic_contour_lon:units = "degrees_east" ;
                cyclonic_contour_lon:valid_min = -180. ;
                cyclonic_contour_lon:valid_max = 180. ;
        float cyclonic_contour_lat(num_cyclones, max_contour_cyclones) ;
                cyclonic_contour_lat:long_name = "latitude of eddy contour points" ;
                cyclonic_contour_lat:units = "degrees_north" ;
                cyclonic_contour_lat:valid_min = -90. ;
                cyclonic_contour_lat:valid_max = 90. ;
        float cyclonic_radius(num_cyclones) ;
                cyclonic_radius:long_name = "equivalent radius of cyclonic eddies" ;
                cyclonic_radius:units = "m" ;
        float cyclonic_area(num_cyclones) ;
                cyclonic_area:long_name = "area of cyclonic eddies" ;
                cyclonic_area:units = "m2" ;
        float cyclonic_amplitude(num_cyclones) ;
                cyclonic_amplitude:long_name = "amplitude of cyclonic eddies" ;
                cyclonic_amplitude:units = "m" ;
        float cyclonic_mean_eke(num_cyclones) ;
                cyclonic_mean_eke:long_name = "mean eddy kinetic energy" ;
                cyclonic_mean_eke:units = "m2 s-2" ;
        float cyclonic_mean_speed(num_cyclones) ;
                cyclonic_mean_speed:standard_name = "sea_water_speed" ;
                cyclonic_mean_speed:long_name = "mean eddy speed" ;
                cyclonic_mean_speed:units = "m s-1" ;
        float cyclonic_mean_vorticity(num_cyclones) ;
                cyclonic_mean_vorticity:standard_name = "ocean_relative_vorticity" ;
                cyclonic_mean_vorticity:long_name = "mean eddy vorticity" ;
                cyclonic_mean_vorticity:units = "s-1" ;
        float cyclonic_center_vorticity(num_cyclones) ;
                cyclonic_center_vorticity:standard_name = "ocean_relative_vorticity" ;
                cyclonic_center_vorticity:long_name = "vorticity at eddy center" ;
                cyclonic_center_vorticity:units = "s-1" ;
        float cyclonic_normalized_center_vorticity(num_cyclones) ;
                cyclonic_normalized_center_vorticity:standard_name = "ocean_relative_vorticity" ;
                cyclonic_normalized_center_vorticity:long_name = "normalized vorticity at eddy center" ;
                cyclonic_normalized_center_vorticity:units = "s-1" ;
        float cyclonic_mean_strain_rate(num_cyclones) ;
                cyclonic_mean_strain_rate:long_name = "mean eddy straining deformation rate" ;
                cyclonic_mean_strain_rate:units = "s-1" ;
        float cyclonic_mean_shear_rate(num_cyclones) ;
                cyclonic_mean_shear_rate:long_name = "mean eddy shearing deformation rate" ;
                cyclonic_mean_shear_rate:units = "s-1" ;
        float cyclonic_mean_ow(num_cyclones) ;
                cyclonic_mean_ow:long_name = "mean eddy Okubo-Weiss parameter" ;
                cyclonic_mean_ow:units = "s-1" ;
        float cyclonic_mean_sst(num_cyclones) ;
                cyclonic_mean_sst:standard_name = "sea_surface_temperature" ;
                cyclonic_mean_sst:long_name = "mean eddy sea surface temperature" ;
                cyclonic_mean_sst:units = "K" ;
        float cyclonic_mean_sss(num_cyclones) ;
                cyclonic_mean_sss:standard_name = "sea_surface_salinity" ;
                cyclonic_mean_sss:long_name = "mean eddy sea surface salinity" ;
                cyclonic_mean_sss:units = "psu" ;
        float cyclonic_mean_chla(num_cyclones) ;
                cyclonic_mean_chla:standard_name = "mass_concentration_of_chlorophyll_a_in_sea_water" ;
                cyclonic_mean_chla:long_name = "mean eddy chlorophyll-a concentration" ;
                cyclonic_mean_chla:units = "mg m-3" ;
        float cyclonic_mean_mesi(num_cyclones) ;
                cyclonic_mean_mesi:long_name = "mean mesoscale eddy significance index" ;&lt;/code&gt;&lt;/pre&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-start-date field--type-datetime field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Start Date&lt;/div&gt;
              &lt;div class="field__item"&gt;May 5, 2020&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Varied&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Ocean Currents&lt;/div&gt;
          &lt;div class="field__item"&gt;Sea Surface Height&lt;/div&gt;
          &lt;div class="field__item"&gt;Sea Surface Salinity&lt;/div&gt;
          &lt;div class="field__item"&gt;Sea Surface Temperature&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-documentation field--type-text-long field--label-hidden field__item"&gt;&lt;h4&gt;Multiparameter Eddy Significance Index (MESI)&lt;/h4&gt;&lt;p&gt;Fore, A.G., Yueh, S.H., Tang, W., Stiles, B.W., Hayashi, A.K., 2016. Combined Active/Passive Retrievals of Ocean Vector Wind and Sea Surface Salinity With SMAP. IEEE Transactions on Geoscience and Remote Sensing 54, 7396–7404.&amp;nbsp;&lt;a href="https://doi.org/10.1109/TGRS.2016.2601486"&gt;&lt;u&gt;https://doi.org/10.1109/TGRS.2016.2601486&lt;/u&gt;&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Liu, X., Wang, M., 2019. Filling the gaps of missing data in the merged VIIRS SNPP/NOAA-20 ocean color product using the DINEOF method. Remote Sensing 11.&amp;nbsp;&lt;a href="https://doi.org/10.3390/rs11020178"&gt;&lt;u&gt;https://doi.org/10.3390/rs11020178&lt;/u&gt;&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Maturi, E., Harris, A., Mittaz, J., Sapper, J., Wick, G., Zhu, X., Dash, P., Koner, P., 2017. A new high-resolution sea surface temperature blended analysis. Bulletin of the American Meteorological Society 98, 1015–1026.&amp;nbsp;&lt;a href="https://doi.org/10.1175/BAMS-D-15-00002.1"&gt;&lt;u&gt;https://doi.org/10.1175/BAMS-D-15-00002.1&lt;/u&gt;&lt;/a&gt;&lt;/p&gt;&lt;p class="text-align-justify" dir="ltr"&gt;Roman‐Stork, H. L., Byrne, D. A., &amp;amp; Leuliette, E. W. (2023). MESI: a multiparameter eddy significance index.&amp;nbsp;&lt;em&gt;Earth and Space Science&lt;/em&gt;,&amp;nbsp;&lt;em&gt;10&lt;/em&gt;(2), &lt;a href="https://doi.org/10.1029/2022EA002583"&gt;https://doi.org/10.1029/2022EA002583&lt;/a&gt;&lt;/p&gt;&lt;p class="text-align-justify" dir="ltr"&gt;Scharroo, R., Leuliette, E., Lillibridge, J., Byrne, D., Naeije, M., Mitchum, G., States, U., States, U., States, U., States, U., 2013. RADS : CONSISTENT MULTI-MISSION PRODUCTS 5–8.&lt;/p&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;&lt;h4&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER)&lt;/h4&gt;&lt;p class="text-align-justify" dir="ltr"&gt;Chaigneau, A., Eldin, G., Dewitte, B., 2009. Eddy activity in the four major upwelling systems from satellite altimetry (1992-2007). Progress in Oceanography 83, 117–123. &lt;a href="https://doi.org/10.1016/j.pocean.2009.07.012"&gt;https://doi.org/10.1016/j.pocean.2009.07.012&lt;/a&gt;&lt;/p&gt;&lt;p class="text-align-justify" dir="ltr"&gt;Chaigneau, A., Gizolme, A., Grados, C., 2008. Mesoscale eddies off Peru in altimeter records: Identification algorithms and eddy spatio-temporal patterns. Progress in Oceanography 79, 106–119. &lt;a href="https://doi.org/10.1016/j.pocean.2008.10.013"&gt;https://doi.org/10.1016/j.pocean.2008.10.013&lt;/a&gt;&lt;/p&gt;&lt;p class="text-align-justify" dir="ltr"&gt;Fore, A.G., Yueh, S.H., Tang, W., Stiles, B.W., Hayashi, A.K., 2016. Combined Active/Passive Retrievals of Ocean Vector Wind and Sea Surface Salinity With SMAP. IEEE Transactions on Geoscience and Remote Sensing 54, 7396–7404.&amp;nbsp;&lt;a href="https://doi.org/10.1109/TGRS.2016.2601486"&gt;&lt;u&gt;https://doi.org/10.1109/TGRS.2016.2601486&lt;/u&gt;&lt;/a&gt;&lt;/p&gt;&lt;p class="text-align-justify" dir="ltr"&gt;Liu, X., Wang, M., 2019. Filling the gaps of missing data in the merged VIIRS SNPP/NOAA-20 ocean color product using the DINEOF method. Remote Sensing 11.&amp;nbsp;&lt;a href="https://doi.org/10.3390/rs11020178"&gt;&lt;u&gt;https://doi.org/10.3390/rs11020178&lt;/u&gt;&lt;/a&gt;&lt;/p&gt;&lt;p class="text-align-justify" dir="ltr"&gt;Maturi, E., Harris, A., Mittaz, J., Sapper, J., Wick, G., Zhu, X., Dash, P., Koner, P., 2017. A new high-resolution sea surface temperature blended analysis. Bulletin of the American Meteorological Society 98, 1015–1026.&amp;nbsp;&lt;a href="https://doi.org/10.1175/BAMS-D-15-00002.1"&gt;&lt;u&gt;https://doi.org/10.1175/BAMS-D-15-00002.1&lt;/u&gt;&lt;/a&gt;&lt;/p&gt;&lt;p class="text-align-justify" dir="ltr"&gt;Pegliasco, C., Chaigneau, A., Morrow, R., 2015. Main eddy vertical structures observed in the four major Eastern Boundary Upwelling Systems. Journal of Geophysical Research: Oceans 120, 6008–6033. &lt;a href="https://doi.org/10.1002/2015JC010950"&gt;https://doi.org/10.1002/2015JC010950&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Geostrophic Currents&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 3&lt;/div&gt;
          &lt;div class="field__item"&gt;Level 4&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/global" hreflang="en"&gt;Global&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/cryosat-2" hreflang="en"&gt;CryoSat-2&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/goes-east" hreflang="en"&gt;GOES-East&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/goes-west" hreflang="en"&gt;GOES-West&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/himawari" hreflang="en"&gt;Himawari&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/jason-3" hreflang="en"&gt;JASON-3&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/meteosat" hreflang="en"&gt;Meteosat&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/metop" hreflang="en"&gt;MetOp&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/noaa" hreflang="en"&gt;NOAA&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/saral" hreflang="en"&gt;SARAL&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/sentinel-3" hreflang="en"&gt;Sentinel-3&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/smap" hreflang="en"&gt;SMAP&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/abi" hreflang="en"&gt;ABI&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/ahi" hreflang="en"&gt;AHI&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/avhrr" hreflang="en"&gt;AVHRR&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/smap" hreflang="en"&gt;SMAP&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/sral" hreflang="en"&gt;SRAL&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;ESA&lt;/div&gt;
          &lt;div class="field__item"&gt;EUMETSAT&lt;/div&gt;
          &lt;div class="field__item"&gt;NASA&lt;/div&gt;
          &lt;div class="field__item"&gt;JPL&lt;/div&gt;
          &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;STAR&lt;/div&gt;
          &lt;div class="field__item"&gt;CoastWatch&lt;/div&gt;
          &lt;div class="field__item"&gt;LSA&lt;/div&gt;
          &lt;div class="field__item"&gt;SST Team&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Multiparameter Eddy Significance Index (MESI)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=27.00&amp;amp;lon=-80.80&amp;amp;z=3&amp;amp;daysback=7&amp;amp;layer0=basemapWI&amp;amp;layer1=MESIb"&gt;https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=27.00&amp;amp;lon=-80.80&amp;amp;z=3&amp;amp;daysback=7&amp;amp;layer0=basemapWI&amp;amp;layer1=MESIb&lt;/a&gt;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;Anticyclonic: &amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=27.00&amp;amp;lon=-80.80&amp;amp;z=3&amp;amp;daysback=7&amp;amp;layer0=basemapWI&amp;amp;layer1=acyclonicEddyb"&gt;https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=27.00&amp;amp;lon=-80.80&amp;amp;z=3&amp;amp;daysback=7&amp;amp;layer0=basemapWI&amp;amp;layer1=acyclonicEddyb&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Cyclonic: &lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=27.00&amp;amp;lon=-80.80&amp;amp;z=3&amp;amp;daysback=7&amp;amp;layer0=basemapWI&amp;amp;layer1=cyclonicEddyb"&gt;https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=27.00&amp;amp;lon=-80.80&amp;amp;z=3&amp;amp;daysback=7&amp;amp;layer0=basemapWI&amp;amp;layer1=cyclonicEddyb&lt;/a&gt;&lt;/p&gt;&lt;p&gt;KML: &amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/data/pub0016/coastwatch/static/netcdf_test_cases/eddy/kml/"&gt;https://coastwatch.noaa.gov/data/pub0016/coastwatch/static/netcdf_test_cases/eddy/kml/&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-sample-filenames field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Sample Filenames&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Multiparameter Eddy Significance Index (MESI)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;MESI_v1_multi_global_daily_s20240501_e20240501.nc&lt;/p&gt;&lt;p&gt;&lt;strong&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;Daily: &amp;nbsp;MUNSTER_v1_eddyident_multi_global_daily_s20240508_e20240508.nc&lt;/p&gt;&lt;p&gt;Weekly: &amp;nbsp;MUNSTER_v1_eddytraject_multi_global_7days_s20240508_e20240514.nc&lt;/p&gt;&lt;p&gt;Monthly: pending&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-https-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;HTTPS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Multiparameter Eddy Significance Index (MESI)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0054/coastwatch/products/eddy_tracking/netcdf/mesi/"&gt;https://coastwatch.noaa.gov/data/pub0054/coastwatch/products/eddy_tracking/netcdf/mesi/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;Daily Eddies: &amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/data/pub0054/coastwatch/products/eddy_tracking/netcdf/munster/eddy_identification/"&gt;https://coastwatch.noaa.gov/data/pub0054/coastwatch/products/eddy_tracking/netcdf/munster/eddy_identification/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Weekly Eddy Tracks: &amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/data/pub0054/coastwatch/products/eddy_tracking/netcdf/munster/eddy_tracks/"&gt;https://coastwatch.noaa.gov/data/pub0054/coastwatch/products/eddy_tracking/netcdf/munster/eddy_tracks/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Monthly Eddy Tracks: product pending&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-metadata- field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;&lt;strong&gt;Data license:&lt;/strong&gt;&lt;/p&gt;&lt;ul&gt;&lt;li dir="ltr"&gt;'Data courtesy of NOAA'&lt;/li&gt;&lt;li dir="ltr"&gt;'Sentinel Data courtesy of Copernicus Program'&lt;/li&gt;&lt;li dir="ltr"&gt;'Generated using AVISO+ Products'&lt;/li&gt;&lt;/ul&gt;&lt;/div&gt;
      
  &lt;div class="clearfix text-formatted field field--name-field-product-thredds-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;THREDDS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Multiparameter Eddy Significance Index (MESI)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;link pending&lt;/p&gt;&lt;p&gt;&lt;strong&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;link pending&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-erddap-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;ERDDAP&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Multiparameter Eddy Significance Index (MESI)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/erddap/griddap/noaacweddymesidaily.graph"&gt;https://coastwatch.noaa.gov/erddap/griddap/noaacweddymesidaily.graph&lt;/a&gt;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;MUltiparameter NRT System for Tracking Eddies Retroactively (MUNSTER)&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/erddap/griddap/noaacweddymunsterdaily.graph"&gt;https://coastwatch.noaa.gov/erddap/griddap/noaacweddymunsterdaily.graph&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Fri, 09 Aug 2024 18:34:42 +0000</pubDate>
    <dc:creator>michael.soracco</dc:creator>
    <guid isPermaLink="false">283 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>
<item>
  <title>NOAA MSL12 multi-sensor DINEOF global 2 km gap-filled products: Chlorophyll-a, diffuse attenuation coefficient Kd(490), and suspended particulate matter (SPM)</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/noaa-msl12-multi-sensor-dineof-global-2-km-gap-filled-products-chlorophyll-diffuse</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;NOAA MSL12 multi-sensor DINEOF global 2 km gap-filled products: Chlorophyll-a, diffuse attenuation coefficient Kd(490), and suspended particulate matter (SPM)&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;The NOAA Multi-Sensor Level-1 to Level-2 (MSL12) Ocean Color, science quality, multi-sensor 2 km global gap-filled analysis includes chlorophyll-a, K&lt;sub&gt;d&lt;/sub&gt;(490), and SPM products. These global gap-free data are generated using the data interpolating empirical orthogonal function (DINEOF) method (&lt;a href="https://doi.org/10.1109/tgrs.2023.3271465"&gt;Liu and Wang, 2023&lt;/a&gt;). This product currently uses data from 3 instruments: the Visible Infrared Imaging Radiometer Suite (VIIRS) sensor aboard the Suomi National Polar-orbiting Partnership (SNPP) satellite, VIIRS on the NOAA-20 satellite, plus the Ocean and Land Colour Instrument (OLCI) on the Sentinel 3A satellite from the Copernicus program of the European Union.&lt;/p&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;michael.soracco&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2024-01-23T11:22:32-05:00" title="Tuesday, January 23, 2024 - 11:22" class="datetime"&gt;Tue, 01/23/2024 - 11:22&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2024-01/V2024013_A1_WW00_chlora_2km.png?itok=RM2KtpdK" width="650" height="270" alt="NOAA Multi-Sensor Level-1 to Level-2 (MSL12) Ocean Color, science quality, multi-sensor 2km global gap-filled chlorophyll-a fro Jan 13, 2024 rendered by the CoastWatch Utilities.  " class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
            &lt;div class="clearfix text-formatted field field--name-field-product-description field--type-text-long field--label-hidden field__item"&gt;&lt;p dir="ltr"&gt;Ocean Color satellite sensors measure visible light, at specific wavelengths, that leaves the surface of the ocean and arrives at the top of the atmosphere where the sensor (satellite platform) is located. From these visible spectral radiance measurements, along with simultaneous radiance measurements at the near-infrared (NIR) and the shortwave infrared (SWIR) wavelengths, the color of the ocean, or normalized water-leaving radiances (&lt;em&gt;nL&lt;sub&gt;w&lt;/sub&gt;&lt;/em&gt;(λ)), can be calculated. Then, the&amp;nbsp;&lt;em&gt;nL&lt;sub&gt;w&lt;/sub&gt;&lt;/em&gt;(λ) spectra are used to derive other ocean properties such as the concentration of chlorophyll-a (chlor-a or Chl-a) (&lt;a href="https://doi.org/10.1016/j.rse.2016.05.001"&gt;&lt;u&gt;Wang and Son, 2016&lt;/u&gt;&lt;/a&gt;), which is the green pigment responsible for photosynthesis and therefore an indicator of the amount of phytoplankton biomass in the ocean water, the diffuse attenuation coefficient at 490 nm&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490) (&lt;a href="https://doi.org/10.1029/2009JC005286"&gt;&lt;u&gt;Wang et al., 2009&lt;/u&gt;&lt;/a&gt;), and water suspended particulate matter (SPM) (&lt;a href="https://doi.org/10.1029/2021JC017303"&gt;&lt;u&gt;Wei et al., 2021&lt;/u&gt;&lt;/a&gt;).&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490) and SPM can be related to water turbidity and clarity.&lt;/p&gt;&lt;p dir="ltr"&gt;The NOAA Multi-Sensor Level-1 to Level-2 (MSL12) Ocean Color, science quality, multi-sensor 2km global gap-filled analysis includes chlorophyll-a,&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490), and SPM products. These global gap-free data are generated using the data interpolating empirical orthogonal function (DINEOF) method&amp;nbsp;(&lt;a href="https://doi.org/10.1109/tgrs.2023.3271465"&gt;&lt;u&gt;Liu and Wang,&amp;nbsp;202&lt;/u&gt;3&lt;/a&gt;). The data that go into these three products currently come from 3 instruments: the&amp;nbsp;&lt;a href="http://www.jpss.noaa.gov/viirs.html"&gt;Visible Infrared Imaging Radiometer Suite (VIIRS) sensor&amp;nbsp;&lt;/a&gt;aboard the Suomi National Polar-orbiting Partnership (SNPP) satellite, VIIRS aboard&amp;nbsp;the NOAA-20 satellite,&amp;nbsp;plus the Ocean and Land Colour Instrument (OLCI) on the Sentinel 3A satellite from the Copernicus program of the European Union. NOAA gets the OLCI Level-1B data from EUMETSAT, and ocean color data at NOAA are processed using the same NOAA MSL12 ocean color data processing system developed by the NOAA/STAR Ocean Color Team (&lt;a href="https://doi.org/10.1002/jgrd.50793"&gt;&lt;u&gt;Wang et al., 2013&lt;/u&gt;&lt;/a&gt;).&lt;/p&gt;&lt;p dir="ltr"&gt;&lt;a href="https://doi.org/10.1364/OE.27.00A445"&gt;&lt;u&gt;Mikelsons and Wang&amp;nbsp;(2019)&lt;/u&gt;&lt;/a&gt;&amp;nbsp;explains the approach to the&lt;a href="https://coastwatch.noaa.gov/cw/satellite-data-products/ocean-color/near-real-time/viirs-multi-sensor-daily-merge.html"&gt;&amp;nbsp;Level-3, multi-sensor merged, global daily data product served by CoastWatch&lt;/a&gt;&amp;nbsp;at ~4 km spatial resolution in NetCDF format. SNPP and NOAA-20 operate along the same Sun-synchronous polar orbit that crosses the equator at about 13:30 local time—both satellites travel around Earth from pole to pole in such a way that they observe the same areas at about the same time of day, no matter the season. There is about a 50-minute delay between the paths of NOAA-20 and SNPP, so NOAA-20’s path runs between two adjacent SNPP orbital paths and vice versa. Thus, the overlap of the spatial coverages in the two VIIRS sensors automatically fills each instrument’s data gaps (&lt;a href="http://doi.org/10.1364/OE.27.00A445"&gt;&lt;em&gt;Mikelsons and Wang&lt;/em&gt;, 2019&lt;/a&gt;). In addition, ocean color data from the VIIRS SNPP and NOAA-20 have the same spatial and temporal resolution, and these data are processed using the same algorithm and software package (i.e., MSL12). Therefore, the statistics of their ocean color products are very similar, and the data can be merged into a global resolution data set directly without adjustment (&lt;a href="http://doi.org/10.3390/rs11020178"&gt;&lt;em&gt;Liu and Wang&lt;/em&gt;, 2019&lt;/a&gt;). These multi-sensor daily merged products are derived from MSL12 for VIIRS SNPP and NOAA-20, as well as OLCI-Sentinel-3A (&lt;a href="https://doi.org/10.1109/tgrs.2023.3271465"&gt;&lt;u&gt;Liu and Wang, 202&lt;/u&gt;3&lt;/a&gt;).&amp;nbsp;&lt;/p&gt;&lt;p dir="ltr"&gt;Note that proper adjustments are applied to Chl-a,&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490), and SPM algorithms&amp;nbsp;so that consistent ocean biological and biogeochemical products can be derived from the three satellite sensors (VIIRS-SNPP, VIIRS-NOAA-20, and OLCI-Sentinel-3A) (&lt;a href="https://doi.org/10.1364/OE.376238"&gt;&lt;u&gt;Wang et al., 2020&lt;/u&gt;&lt;/a&gt;).&lt;/p&gt;&lt;p dir="ltr"&gt;The EOS article by&amp;nbsp;&lt;a href="https://doi.org/10.1029/2019EO136548"&gt;&lt;u&gt;Liu and Wang&amp;nbsp;(2019)&lt;/u&gt;&lt;/a&gt;&amp;nbsp;explains the approach to the Level-4, multi-sensor, gap-filled analysis for the earlier, 2-sensor product (VIIRS SNPP plus VIIRS NOAA-20;&amp;nbsp;also available on CoastWatch). "Even after the datasets from the two satellites are merged, some gaps remain. To complete the picture, the gap-filling application uses a mathematical technique based on the data interpolating empirical orthogonal function (DINEOF) (&lt;a href="http://doi.org/10.1016/j.ocemod.2004.08.001"&gt;&lt;em&gt;Alvera-Azcarate et al.&lt;/em&gt;,&lt;em&gt;&amp;nbsp;2005&lt;/em&gt;&lt;/a&gt;;&amp;nbsp;&lt;a href="http://doi.org/10.1175/1520-0426(2003)020%3c1839:ECADFF%3e2.0.CO;2"&gt;&lt;em&gt;Beckers and Rixen, 2003&lt;/em&gt;&lt;/a&gt;). This technique exploits the coherency over location and time of the data from the two satellites to infer a value at the missing location." CoastWatch now serves this 3-sensor-derived daily global gap-filled Chl-a, &lt;em&gt;K&lt;/em&gt;&lt;sub&gt;d&lt;/sub&gt;(490), and SPM products at 2 km spatial resolution in NetCDF. Go to the data access tab on this page for access.&lt;/p&gt;&lt;p&gt;Please read&lt;a href="10.1109/tgrs.2023.3271465"&gt;&amp;nbsp;&lt;u&gt;Liu and Wang&amp;nbsp;(2023)&lt;/u&gt;&lt;/a&gt;&amp;nbsp;for details about the global gap-free ocean color products of Chl-a,&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490), and SPM derived from multi-satellite measurements of VIIRS-SNPP, VIIRS-NOAA-20, and OLCI-Sentinel-3A.&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-start-date field--type-datetime field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Start Date&lt;/div&gt;
              &lt;div class="field__item"&gt;February 9, 2018&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Daily&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Ocean Color&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-documentation field--type-text-long field--label-hidden field__item"&gt;&lt;p dir="ltr"&gt;Liu and Wang, 2023 (Liu, X. and M. Wang, "High spatial resolution gap-free global and regional ocean color products", IEEE Trans. Geosci. Remote Sens., 61, 4204118 (2023). &lt;a href="10.1109/tgrs.2023.3271465"&gt;doi:10.1109/tgrs.2023.3271465&lt;/a&gt;)&lt;/p&gt;&lt;p dir="ltr"&gt;Liu, X. and M. Wang, "Global daily gap-free ocean color products from multi-satellite measurements", Int. J. Appl. Earth Obs. Geoinf., 108, 102714 (2022).&amp;nbsp;&lt;a href="https://doi.org/10.1016/j.jag.2022.102714"&gt;doi:10.1016/j.jag.2022.102714&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Wei, J., M. Wang, L. Jiang, X. Yu, K. Mikelsons, and F. Shen, "Global estimation of suspended particulate matter from satellite ocean color imagery", Journal of Geophysical Research: Oceans, 126, e2021JC017303 (2021).&amp;nbsp;&lt;a href="https://doi.org/10.1029/2021JC017303"&gt;doi:10.1029/2021JC017303&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Liu, X. and M. Wang, "Filling the gaps in ocean maps", EOS, 100 (2019).&amp;nbsp;&lt;a href="https://dx.doi.org/10.1029/2019EO136548"&gt;doi:10.1029/2019EO136548&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Liu, X., and M. Wang (2019), Filling the gaps of missing data in the merged VIIRS SNPP/NOAA-20 ocean color product using the DINEOF method, Remote Sens., 11, 178,&amp;nbsp;&lt;a href="https://doi.org/10.3390/rs11020178"&gt;https://doi.org/10.3390/rs11020178&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Mikelsons, K., and M. Wang (2019), Optimal satellite orbit configuration for global ocean color product coverage, Opt. Express, 27, A445–A457,&amp;nbsp;&lt;a href="https://doi.org/10.1364/OE.27.00A445"&gt;https://doi.org/10.1364/OE.27.00A445&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Mikelsons, K., and M. Wang (2018), Interactive online maps make satellite ocean data accessible, Eos Trans. AGU, 99,&amp;nbsp;&lt;a href="https://doi.org/10.1029/2018EO096563"&gt;https://doi.org/10.1029/2018EO096563&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Liu, X. and M. Wang, "Gap filling of missing data for VIIRS global ocean color product using the DINEOF method", IEEE Trans. Geosci. Remote Sens., 56, 4464-4476 (2018).&amp;nbsp;&lt;a href="https://dx.doi.org/10.1109/TGRS.2018.2820423"&gt;doi:10.1109/TGRS.2018.2820423&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M. and S. Son, "VIIRS-derived chlorophyll-a using the ocean color index method", Remote Sens. Environ., 182, 141-149 (2016).&amp;nbsp;&lt;a href="https://dx.doi.org/10.1016/j.rse.2016.05.001"&gt;doi:10.1016/j.rse.2016.05.001&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M., et al. (2013), Impact of VIIRS SDR performance on ocean color products, J. Geophys. Res. Atmos., 118, 10,347–10,360,&amp;nbsp;&lt;a href="https://doi.org/10.1002/jgrd.50793"&gt;https://doi.org/10.1002/jgrd.50793&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M., S. Son, and L. W. Harding Jr., “Retrieval of diffuse attenuation coefficient in the Chesapeake Bay and turbid ocean regions for satellite ocean color applications,” J. Geophys. Res., 114, C10011,&amp;nbsp;&lt;a href="https://doi.org/10.1029/2009JC005286"&gt;https://doi.org/10.1029/2009JC005286&lt;/a&gt;, 2009.&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M., L. Jiang, S. Son, X. Liu, and K. J. Voss, “Deriving consistent ocean biological and biogeochemical products from multiple satellite ocean color sensors,” Opt. Express, 28, 2661–2682, 2020.&amp;nbsp;&lt;a href="https://doi.org/10.1364/OE.376238"&gt;https://doi.org/10.1364/OE.376238&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Alvera-Azcarate, A., et al. (2005), Reconstruction of incomplete oceanographic data sets using empirical orthogonal functions: Application to the Adriatic Sea, Ocean Model., 9, 325–346,&amp;nbsp;&lt;a href="https://doi.org/10.1016/j.ocemod.2004.08.001"&gt;https://doi.org/10.1016/j.ocemod.2004.08.001&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Beckers, J., and M. Rixen (2003), EOF calculations and data filling from incomplete oceanographic data sets, J. Atmos. Oceanic Technol., 20, 1,839–1,856,&amp;nbsp;&lt;a href="https://doi.org/10.1175/1520-0426(2003)020%3C1839:ECADFF%3E2.0.CO;2"&gt;https://doi.org/10.1175/1520-0426(2003)020&amp;lt;1839:ECADFF&amp;gt;2.0.CO;2&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Algorithm Theoretical Basis Document (ATBD)&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M., X. Liu, L. Jiang and S. Son,&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/sod/mecb/color/documents/ATBD_VIIRS_OC_v1.0_June2017_f2.pdf"&gt;"The VIIRS Ocean Color Products"&lt;/a&gt;, Algorithm Theoretical Basis Document Version 1.0, 68 pp., June 2017.&lt;/p&gt;&lt;p&gt;For more MSL12 processing documentation, please&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/cw/satellite-data-products/ocean-color/near-real-time/viirs-single-sensor.html"&gt;go to documentation tab here&lt;/a&gt;.&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Chlorophyll-a Concentration&lt;/div&gt;
          &lt;div class="field__item"&gt;Diffuse Attenuation Coefficients&lt;/div&gt;
          &lt;div class="field__item"&gt;Suspended Particulate Matter&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 4&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/global" hreflang="en"&gt;Global&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-latency-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;24+ hours (Delayed)&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-latency-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Daily, ~24h to 48h&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-resolution-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;100m &amp;lt; 2km&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-resolution-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;2km&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/noaa" hreflang="en"&gt;NOAA&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/sentinel-3" hreflang="en"&gt;Sentinel-3&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/olci" hreflang="en"&gt;OLCI&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-algorit field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Algorithms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/processing-algorithms/msl12" hreflang="en"&gt;MSL12&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;STAR&lt;/div&gt;
          &lt;div class="field__item"&gt;CoastWatch&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;CoastWatch Data Portal:&amp;nbsp;&lt;/strong&gt;&lt;/p&gt;&lt;ul&gt;&lt;li&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=7.05&amp;amp;lon=-147.33&amp;amp;z=2&amp;amp;layer0=basemapWI&amp;amp;layer1=chl2kdineofnrt3sensord"&gt;Chlorophyll-a&lt;/a&gt;&lt;/li&gt;&lt;li&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=7.05&amp;amp;lon=-147.33&amp;amp;z=2&amp;amp;layer0=basemapWI&amp;amp;layer1=kd4902kdineofnrt3sensord"&gt;K&lt;sub&gt;d&lt;/sub&gt;(490)&lt;/a&gt;&lt;/li&gt;&lt;li&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=7.05&amp;amp;lon=-147.33&amp;amp;z=2&amp;amp;layer0=basemapWI&amp;amp;layer1=spm2kdineofnrt3sensord"&gt;Suspended Particulate Matter (SPM)&lt;/a&gt;&lt;/li&gt;&lt;/ul&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-sample-filenames field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Sample Filenames&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;V2022141_A1_WW00_chlora_2km.nc&lt;/p&gt;&lt;p&gt;V2022141_A1_WW00_kd490_2km.nc&lt;/p&gt;&lt;p&gt;V2022141_A1_WW00_spm_2km.nc&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-https-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;HTTPS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Chlorophyll-a:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0040/coastwatch/viirs/science/L3/global/chlora/dineof2km/"&gt;https://coastwatch.noaa.gov/data/pub0040/coastwatch/viirs/science/L3/global/chlora/dineof2km/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;K&lt;sub&gt;d&lt;/sub&gt;(490):&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0040/coastwatch/viirs/science/L3/global/kd/dineof2km/"&gt;https://coastwatch.noaa.gov/data/pub0040/coastwatch/viirs/science/L3/global/kd/dineof2km/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Suspended Particulate Matter (SPM):&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0040/coastwatch/viirs/science/L3/global/spm/dineof2km/"&gt;https://coastwatch.noaa.gov/data/pub0040/coastwatch/viirs/science/L3/global/spm/dineof2km/&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-thredds-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;THREDDS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_merged_dineof_products.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_merged_dineof_products.html&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-erddap-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;ERDDAP&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=2km+dineof"&gt;https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=2km+dineof&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Tue, 23 Jan 2024 16:22:32 +0000</pubDate>
    <dc:creator>michael.soracco</dc:creator>
    <guid isPermaLink="false">246 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>
<item>
  <title>NOAA MSL12 multi-sensor DINEOF global 9km gap-filled products: Chlorophyll-a, diffuse attenuation coefficient Kd(490), and suspended particulate matter (SPM)</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/noaa-msl12-multi-sensor-dineof-global-9km-gap-filled-products-chlorophyll-diffuse</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;NOAA MSL12 multi-sensor DINEOF global 9km gap-filled products: Chlorophyll-a, diffuse attenuation coefficient Kd(490), and suspended particulate matter (SPM)&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;The NOAA Multi-Sensor Level-1 to Level-2 (MSL12) Ocean Color, science quality, multi-sensor global gap-filled analysis includes chlorophyll-a, &lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490), and SPM products. These global gap-free data are generated using the data interpolating empirical orthogonal function (DINEOF) method (Liu and Wang, 2022). The data that go into this product currently come from 3 instruments: the Visible Infrared Imaging Radiometer Suite (VIIRS) sensor aboard the Suomi National Polar-orbiting Partnership (SNPP) satellite, VIIRS on the NOAA-20 satellite, plus the Ocean and Land Colour Instrument (OLCI) on the Sentinel 3A satellite from the Copernicus program of the European Union.&lt;/p&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;jebidiah.jeffery&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2022-10-28T10:47:01-04:00" title="Friday, October 28, 2022 - 10:47" class="datetime"&gt;Fri, 10/28/2022 - 10:47&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2022-10/B2022074_A1_WW00_chlora_0.png?itok=kmfDOQnP" width="650" height="258" alt="Global Map projection displaying chlorophyll-a concentration" class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
            &lt;div class="clearfix text-formatted field field--name-field-product-description field--type-text-long field--label-hidden field__item"&gt;&lt;p dir="ltr"&gt;Ocean Color satellite sensors measure visible light, at specific wavelengths, that leaves the surface of the ocean and arrives at the top of the atmosphere where the sensor (satellite platform) is located. From these visible spectral radiance measurements, along with simultaneous radiance measurements at the near-infrared (NIR) and the shortwave infrared (SWIR) wavelengths, the color of the ocean, or normalized water-leaving radiances (&lt;em&gt;nL&lt;sub&gt;w&lt;/sub&gt;&lt;/em&gt;(λ)), can be calculated. Then, the&amp;nbsp;&lt;em&gt;nL&lt;sub&gt;w&lt;/sub&gt;&lt;/em&gt;(λ) spectra are used to derive other ocean properties such as the concentration of chlorophyll-a (chlor-a or Chl-a) (&lt;a href="https://doi.org/10.1016/j.rse.2016.05.001"&gt;&lt;u&gt;Wang and Son, 2016&lt;/u&gt;&lt;/a&gt;), which is the green pigment responsible for photosynthesis and therefore an indicator of the amount of phytoplankton biomass in the ocean water, the diffuse attenuation coefficient at 490 nm&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490) (&lt;a href="https://doi.org/10.1029/2009JC005286"&gt;&lt;u&gt;Wang et al., 2009&lt;/u&gt;&lt;/a&gt;), and water suspended particulate matter (SPM) (&lt;a href="https://doi.org/10.1029/2021JC017303"&gt;&lt;u&gt;Wei et al., 2021&lt;/u&gt;&lt;/a&gt;).&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490) and SPM can be related to water turbidity and clarity.&lt;/p&gt;&lt;p dir="ltr"&gt;The NOAA Multi-Sensor Level-1 to Level-2 (MSL12) Ocean Color, science quality, multi-sensor global gap-filled analysis includes chlorophyll-a,&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490), and SPM products. These global gap-free data are generated using the data interpolating empirical orthogonal function (DINEOF) method&amp;nbsp;(&lt;a href="https://doi.org/10.1016/j.jag.2022.102714"&gt;&lt;u&gt;Liu and Wang,&amp;nbsp;2022&lt;/u&gt;&lt;/a&gt;). The data that go into these three products currently come from 3 instruments: the&amp;nbsp;&lt;a href="http://www.jpss.noaa.gov/viirs.html"&gt;Visible Infrared Imaging Radiometer Suite (VIIRS) sensor&amp;nbsp;&lt;/a&gt;aboard the Suomi National Polar-orbiting Partnership (SNPP) satellite, VIIRS aboard&amp;nbsp;the NOAA-20 satellite,&amp;nbsp;plus the Ocean and Land Colour Instrument (OLCI) on the Sentinel 3A satellite from the Copernicus program of the European Union. NOAA gets the OLCI Level-1B data from EUMETSAT, and ocean color data at NOAA are processed using the same NOAA MSL12 ocean color data processing system developed by the NOAA/STAR Ocean Color Team (&lt;a href="https://doi.org/10.1002/jgrd.50793"&gt;&lt;u&gt;Wang et al., 2013&lt;/u&gt;&lt;/a&gt;).&lt;/p&gt;&lt;p dir="ltr"&gt;&lt;a href="https://doi.org/10.1364/OE.27.00A445"&gt;&lt;u&gt;Mikelsons and Wang&amp;nbsp;(2019)&lt;/u&gt;&lt;/a&gt;&amp;nbsp;explains the approach to the&lt;a href="https://coastwatch.noaa.gov/cw/satellite-data-products/ocean-color/near-real-time/viirs-multi-sensor-daily-merge.html"&gt;&amp;nbsp;Level-3, multi-sensor merged, global daily data product served by CoastWatch&lt;/a&gt;&amp;nbsp;at ~4 km spatial resolution in NetCDF format. SNPP and NOAA-20 operate along the same Sun-synchronous polar orbit that crosses the equator at about 13:30 local time—both satellites travel around Earth from pole to pole in such a way that they observe the same areas at about the same time of day, no matter the season. There is about a 50-minute delay between the paths of NOAA-20 and SNPP, so NOAA-20’s path runs between two adjacent SNPP orbital paths and vice versa. Thus, the overlap of the spatial coverages in the two VIIRS sensors automatically fills each instrument’s data gaps (&lt;a href="http://doi.org/10.1364/OE.27.00A445"&gt;&lt;em&gt;Mikelsons and Wang&lt;/em&gt;, 2019&lt;/a&gt;). In addition, ocean color data from the VIIRS SNPP and NOAA-20 have the same spatial and temporal resolution, and these data are processed using the same algorithm and software package (i.e., MSL12). Therefore, the statistics of their ocean color products are very similar, and the data can be merged into a global 9-kilometer resolution data set directly without adjustment (&lt;a href="http://doi.org/10.3390/rs11020178"&gt;&lt;em&gt;Liu and Wang&lt;/em&gt;, 2019&lt;/a&gt;). These multi-sensor daily merged products are derived from MSL12 for VIIRS SNPP and NOAA-20, as well as OLCI-Sentinel-3A (&lt;a href="https://doi.org/10.1016/j.jag.2022.102714"&gt;&lt;u&gt;Liu and Wang, 2022&lt;/u&gt;&lt;/a&gt;).&amp;nbsp;&lt;/p&gt;&lt;p dir="ltr"&gt;Note that proper adjustments are applied to Chl-a,&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490), and SPM algorithms&amp;nbsp;so that consistent ocean biological and biogeochemical products can be derived from the three satellite sensors (VIIRS-SNPP, VIIRS-NOAA-20, and OLCI-Sentinel-3A) (&lt;a href="https://doi.org/10.1364/OE.376238"&gt;&lt;u&gt;Wang et al., 2020&lt;/u&gt;&lt;/a&gt;).&lt;/p&gt;&lt;p dir="ltr"&gt;The EOS article by&amp;nbsp;&lt;a href="https://doi.org/10.1029/2019EO136548"&gt;&lt;u&gt;Liu and Wang&amp;nbsp;(2019)&lt;/u&gt;&lt;/a&gt;&amp;nbsp;explains the approach to the Level-4, multi-sensor, gap-filled analysis for the earlier, 2-sensor product (VIIRS SNPP plus VIIRS NOAA-20;&amp;nbsp;also available on CoastWatch). "Even after the datasets from the two satellites are merged, some gaps remain. To complete the picture, the gap-filling application uses a mathematical technique based on the data interpolating empirical orthogonal function (DINEOF) (&lt;a href="http://doi.org/10.1016/j.ocemod.2004.08.001"&gt;&lt;em&gt;Alvera-Azcarate et al.&lt;/em&gt;,&lt;em&gt;&amp;nbsp;2005&lt;/em&gt;&lt;/a&gt;;&amp;nbsp;&lt;a href="http://doi.org/10.1175/1520-0426(2003)020%3c1839:ECADFF%3e2.0.CO;2"&gt;&lt;em&gt;Beckers and Rixen, 2003&lt;/em&gt;&lt;/a&gt;). This technique exploits the coherency over location and time of the data from the two satellites to infer a value at the missing location." CoastWatch now serves this 3-sensor-derived daily global gap-filled Chl-a, &lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490), ans SPM products at 9 km spatial resolution in NetCDF. Go to the data access tab on this page for access.&lt;/p&gt;&lt;p&gt;Please read&amp;nbsp;&lt;a href="https://doi.org/10.1016/j.jag.2022.102714"&gt;&lt;u&gt;Liu and Wang&amp;nbsp;(2022)&lt;/u&gt;&lt;/a&gt;&amp;nbsp;for details about the global gap-free ocean color products of Chl-a,&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490), and SPM derived from multi-satellite measurements of VIIRS-SNPP, VIIRS-NOAA-20, and OLCI-Sentinel-3A.&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-start-date field--type-datetime field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Start Date&lt;/div&gt;
              &lt;div class="field__item"&gt;February 9, 2018&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Daily&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Ocean Color&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-documentation field--type-text-long field--label-hidden field__item"&gt;&lt;p dir="ltr"&gt;Liu, X. and M. Wang, "Global daily gap-free ocean color products from multi-satellite measurements", Int. J. Appl. Earth Obs. Geoinf., 108, 102714 (2022).&amp;nbsp;&lt;a href="https://doi.org/10.1016/j.jag.2022.102714"&gt;doi:10.1016/j.jag.2022.102714&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Wei, J., M. Wang, L. Jiang, X. Yu, K. Mikelsons, and F. Shen, "Global estimation of suspended particulate matter from satellite ocean color imagery", Journal of Geophysical Research: Oceans, 126, e2021JC017303 (2021).&amp;nbsp;&lt;a href="https://doi.org/10.1029/2021JC017303"&gt;doi:10.1029/2021JC017303&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Liu, X. and M. Wang, "Filling the gaps in ocean maps", EOS, 100 (2019).&amp;nbsp;&lt;a href="https://dx.doi.org/10.1029/2019EO136548"&gt;doi:10.1029/2019EO136548&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Liu, X., and M. Wang (2019), Filling the gaps of missing data in the merged VIIRS SNPP/NOAA-20 ocean color product using the DINEOF method, Remote Sens., 11, 178,&amp;nbsp;&lt;a href="https://doi.org/10.3390/rs11020178"&gt;https://doi.org/10.3390/rs11020178&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Mikelsons, K., and M. Wang (2019), Optimal satellite orbit configuration for global ocean color product coverage, Opt. Express, 27, A445–A457,&amp;nbsp;&lt;a href="https://doi.org/10.1364/OE.27.00A445"&gt;https://doi.org/10.1364/OE.27.00A445&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Mikelsons, K., and M. Wang (2018), Interactive online maps make satellite ocean data accessible, Eos Trans. AGU, 99,&amp;nbsp;&lt;a href="https://doi.org/10.1029/2018EO096563"&gt;https://doi.org/10.1029/2018EO096563&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Liu, X. and M. Wang, "Gap filling of missing data for VIIRS global ocean color product using the DINEOF method", IEEE Trans. Geosci. Remote Sens., 56, 4464-4476 (2018).&amp;nbsp;&lt;a href="https://dx.doi.org/10.1109/TGRS.2018.2820423"&gt;doi:10.1109/TGRS.2018.2820423&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M. and S. Son, "VIIRS-derived chlorophyll-a using the ocean color index method", Remote Sens. Environ., 182, 141-149 (2016).&amp;nbsp;&lt;a href="https://dx.doi.org/10.1016/j.rse.2016.05.001"&gt;doi:10.1016/j.rse.2016.05.001&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M., et al. (2013), Impact of VIIRS SDR performance on ocean color products, J. Geophys. Res. Atmos., 118, 10,347–10,360,&amp;nbsp;&lt;a href="https://doi.org/10.1002/jgrd.50793"&gt;https://doi.org/10.1002/jgrd.50793&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M., S. Son, and L. W. Harding Jr., “Retrieval of diffuse attenuation coefficient in the Chesapeake Bay and turbid ocean regions for satellite ocean color applications,” J. Geophys. Res., 114, C10011,&amp;nbsp;&lt;a href="https://doi.org/10.1029/2009JC005286"&gt;https://doi.org/10.1029/2009JC005286&lt;/a&gt;, 2009.&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M., L. Jiang, S. Son, X. Liu, and K. J. Voss, “Deriving consistent ocean biological and biogeochemical products from multiple satellite ocean color sensors,” Opt. Express, 28, 2661–2682, 2020.&amp;nbsp;&lt;a href="https://doi.org/10.1364/OE.376238"&gt;https://doi.org/10.1364/OE.376238&lt;/a&gt;&lt;/p&gt;&lt;p dir="ltr"&gt;Alvera-Azcarate, A., et al. (2005), Reconstruction of incomplete oceanographic data sets using empirical orthogonal functions: Application to the Adriatic Sea, Ocean Model., 9, 325–346,&amp;nbsp;&lt;a href="https://doi.org/10.1016/j.ocemod.2004.08.001"&gt;https://doi.org/10.1016/j.ocemod.2004.08.001&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Beckers, J., and M. Rixen (2003), EOF calculations and data filling from incomplete oceanographic data sets, J. Atmos. Oceanic Technol., 20, 1,839–1,856,&amp;nbsp;&lt;a href="https://doi.org/10.1175/1520-0426(2003)020%3C1839:ECADFF%3E2.0.CO;2"&gt;https://doi.org/10.1175/1520-0426(2003)020&amp;lt;1839:ECADFF&amp;gt;2.0.CO;2&lt;/a&gt;.&lt;/p&gt;&lt;p dir="ltr"&gt;Algorithm Theoretical Basis Document (ATBD)&lt;/p&gt;&lt;p dir="ltr"&gt;Wang, M., X. Liu, L. Jiang and S. Son,&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/sod/mecb/color/documents/ATBD_VIIRS_OC_v1.0_June2017_f2.pdf"&gt;"The VIIRS Ocean Color Products"&lt;/a&gt;, Algorithm Theoretical Basis Document Version 1.0, 68 pp., June 2017.&lt;/p&gt;&lt;p&gt;For more MSL12 processing documentation, please&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/cw/satellite-data-products/ocean-color/near-real-time/viirs-single-sensor.html"&gt;go to documentation tab here&lt;/a&gt;.&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Chlorophyll-a Concentration&lt;/div&gt;
          &lt;div class="field__item"&gt;Diffuse Attenuation Coefficients&lt;/div&gt;
          &lt;div class="field__item"&gt;Suspended Particulate Matter&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 4&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/global" hreflang="en"&gt;Global&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-latency-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;24+ hours (Delayed)&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-latency-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Daily, ~24h to 48h&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-resolution-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;2km+&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-resolution-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;9km&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/noaa" hreflang="en"&gt;NOAA&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/sentinel-3" hreflang="en"&gt;Sentinel-3&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/olci" hreflang="en"&gt;OLCI&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-algorit field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Algorithms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/processing-algorithms/msl12" hreflang="en"&gt;MSL12&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;STAR&lt;/div&gt;
          &lt;div class="field__item"&gt;CoastWatch&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;CoastWatch Data Portal:&amp;nbsp;&lt;/strong&gt;&lt;/p&gt;&lt;ul&gt;&lt;li&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=7.05&amp;amp;lon=-147.33&amp;amp;z=2&amp;amp;layer0=basemapWI&amp;amp;layer1=chldineofnrt3sensord"&gt;Chlorophyll-a&lt;/a&gt;&lt;/li&gt;&lt;li&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=7.05&amp;amp;lon=-147.33&amp;amp;z=2&amp;amp;layer0=basemapWI&amp;amp;layer1=kd490dineofnrt3sensord"&gt;Kd(490)&lt;/a&gt;&lt;/li&gt;&lt;li&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=7.05&amp;amp;lon=-147.33&amp;amp;z=2&amp;amp;layer0=basemapWI&amp;amp;layer1=spmdineofnrt3sensord"&gt;Suspended Particulate Matter (SPM)&lt;/a&gt;&lt;/li&gt;&lt;/ul&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-sample-filenames field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Sample Filenames&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;B2022141_A1_WW00_chlora.nc&lt;/p&gt;&lt;p&gt;B2022141_A1_WW00_kd490.nc&lt;/p&gt;&lt;p&gt;B2022141_A1_WW00_spm.nc&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-https-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;HTTPS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Chlorophyll-a:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/chlora/dineof3/"&gt;https://coastwatch.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/chlora/dineof3/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Kd(490):&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/kd/dineof3/"&gt;https://coastwatch.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/kd/dineof3/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Suspended Particulate Matter (SPM):&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/spm/dineof3/"&gt;https://coastwatch.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/spm/dineof3/&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-thredds-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;THREDDS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_merged_dineof_products.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_merged_dineof_products.html&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-erddap-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;ERDDAP&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=DINEOF+OLCI"&gt;https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=DINEOF+OLCI&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Fri, 28 Oct 2022 14:47:01 +0000</pubDate>
    <dc:creator>jebidiah.jeffery</dc:creator>
    <guid isPermaLink="false">164 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>
<item>
  <title>Oceanic Heat Content, Mixed Layer Depth and Depths of 20°C and 26°C Isotherms</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/oceanic-heat-content-mixed-layer-depth-and-depths-20degc-and-26degc-isotherms</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;Oceanic Heat Content, Mixed Layer Depth and Depths of 20°C and 26°C Isotherms&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;Oceanic Heat Content (OHC) is the measure of the integrated vertical temperature from the sea surface to the depth of the 26°C isotherm and computed from the altimeter-derived isotherm depths in the upper ocean relative to 20°C. &amp;nbsp;Global 0.25 degree grids are generated daily for OHC, mixed layer depth and depths of 20°C and 26°C isotherms for 3 ocean basins: &amp;nbsp;North Atlantic, North Pacific and South Pacific&amp;nbsp;&lt;/p&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;jebidiah.jeffery&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2022-03-17T11:31:14-04:00" title="Thursday, March 17, 2022 - 11:31" class="datetime"&gt;Thu, 03/17/2022 - 11:31&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2022-08/oceanheatcontent.png?itok=RpIqxyBG" width="650" height="305" alt="Global map projections of ocean heat content over the world's oceans" class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
            &lt;div class="clearfix text-formatted field field--name-field-product-description field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;Oceanic Heat Content (OHC) is the measure of the integrated vertical temperature from the sea surface to the depth of the 26°C isotherm and computed from the altimeter-derived isotherm depths in the upper ocean relative to 20°C.&amp;nbsp; Satellite data inputs for sea surface temperature (SST) are from the NOAA GeoPolar Blended sea surface temperature and for the sea surface height anomaly (SSHA) are from at least 2 satellite altimetry missions.&amp;nbsp; Global 0.25 degree grids are generated daily for OHC, mixed layer depth and depths of 20°C and 26°C isotherms for 3 ocean basins:&amp;nbsp; North Atlantic, North Pacific and South Pacific.&lt;/p&gt;&lt;p&gt;&lt;strong&gt;BACKGROUND&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;More than 90% of the warming on the Earth over the past 50 years occurred in the Ocean (Shay L.K. 2019).The heat content of the ocean is the amount of heat energy (in joules) stored within a pre-defined volume of the upper ocean.&amp;nbsp;&amp;nbsp; To determine the heat content value in the ocean, NOAA/NESDIS produces a daily operational suite of satellite-derived Oceanic Heat Content (OHC) products for the North Atlantic, and the North and South Pacific basins.&amp;nbsp; A suite of OHC products for the Indian Ocean are planned which will contribute significantly toward global coverage. OHC is an important climate change indicator and provides a high quality climatic data record.&amp;nbsp; These suites of satellite-derived OHC products are validated against over one million in-situ measurements from multiple platforms to assess biases and uncertainties. The NOAA OHC product is shown to be the best product available for Hurricane Intensity Forecasting (Meyers et. al. 2015).&amp;nbsp; Daily display of these OHC products provides valuable data to address key science questions related to climate such as: 1) the extent of warming (or cooling) in the warm pools of the Atlantic and Pacific Ocean basins; 2) thermodynamic processes in the equatorial wave guides associated with eastward propagating Kelvin Waves (ENSO); and linkages to the Madden-Julian Oscillation) across the tropics.&amp;nbsp; Benefits for climate studies are a new understanding of the upper ocean thermodynamics, dynamics and air-sea processes relevant to tropical cyclone intensity forecasting, climatic variability (e.g., OHC anomalies over various time scales), fisheries, and coral reef bleaching. Figure 1 are the input fields (Altimetry and SST) used to generate the OHC Products.&lt;/p&gt;&lt;p&gt;&lt;strong&gt;DEFINITION&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;Oceanic Heat Content (OHC) is defined as the measure of the integrated vertical temperature from the sea surface to the depth of the 26°C isotherm and computed from the altimeter-derived isotherm depths in the upper ocean relative to 20°C.&lt;/p&gt;&lt;p&gt;&lt;strong&gt;METHODOLOGY&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;em&gt;Algorithm&lt;/em&gt;&lt;/p&gt;&lt;p&gt;OHC values are estimated using four points: &amp;nbsp;1) the sea surface temperature obtained from NOAA/NESDIS Geo Polar SST Analysis; 2) the altimeter-estimates of the 20°C isotherm within a two-layer reduced gravity scheme; 3) the depth of the 26°C isotherm from a climatological relationship between the depths of the 20°C and 26°C isotherm; and 4) flexibility in estimating other isotherm depths (e.g., 25°C) then integrate. The full algorithm description is in the Algorithm Theoretical Basis Document (ATBD) (see documentation link).&lt;/p&gt;&lt;p&gt;&lt;em&gt;Validation&lt;/em&gt;&lt;/p&gt;&lt;p&gt;Validation is accomplished by 1) calculating OHC from various&amp;nbsp;&lt;em&gt;in situ&lt;/em&gt;&amp;nbsp;data sources (Argo, XBT, PIRATA/TAO, and Air-deployed probes); 2) then compared to the satellite-derived OHC grid point that is closest to that source in time and space; 3) regression analysis and root-mean-square deviation (RMSD) statistics are used to determine an agreement between the satellite and in situ data; and the accuracy has to be within 10 percent of the&amp;nbsp;&lt;em&gt;in situ&lt;/em&gt;&amp;nbsp;data (kJ cm&lt;sup&gt;-2&lt;/sup&gt;).&lt;/p&gt;&lt;p&gt;The addition of new satellite data requires new validation of the product.&lt;/p&gt;&lt;p&gt;Visual images of the OHC product suite are created on a daily basis.&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-short-name field--type-string field--label-above"&gt;
    &lt;div class="field__label"&gt;Short Names&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Satellite derived Ocean Heat Content&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Daily&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Ocean Heat Content&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-documentation field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/pdf/products/OHC/ATBD_OHC_NESDIS_V3-1-1.pdf "&gt;ATBD:&amp;nbsp; Shay, L. K., J. K. Brewster, ​E. Maturi,&amp;nbsp;P. C.,Meyers and C. McCaskill, Algorithm Theoretical Basis Document for Satellite-dervied Oceanic Heat Content Product, Version 3.1, June 2015&lt;/a&gt;&lt;/p&gt;&lt;ul&gt;&lt;li&gt;Shay, L.K., G.J. Goni and P.G. Black.(2000)&amp;nbsp; Effects of a warm oceanic feature on Hurricane Opal.,&amp;nbsp; Monthly Weather Review, 125(5), 1366-1383.&lt;/li&gt;&lt;li&gt;De Maria, M. , M. Mainelli ,&amp;nbsp; L.K. Shay, J.A. Knaff, and J. Kaplan.&amp;nbsp; (2005) Further improvements to the statistical hurricane intensity prediction scheme (SHIPS).&amp;nbsp;&amp;nbsp; Weather and Forecasting, 20(4), 531-543.&lt;/li&gt;&lt;li&gt;Ali, M. M., P.S.V. Jagadeesh and Sarika Jain (2007a). Effects of Eddies on Bay of&amp;nbsp; Bengal Cyclone Intensity,&amp;nbsp;&lt;em&gt;EOS&lt;/em&gt;, Vol. 88, p 93, 95.&lt;/li&gt;&lt;li&gt;Halliwell GR, &amp;nbsp;Shay LK, &amp;nbsp;Jacob SD, &amp;nbsp;Smedstad OM, Uhlhorn EW (2008) Improving Ocean Model Initialization for Coupled Tropical Cyclone Forecast Models Using GODAE Nowcasts.&amp;nbsp;&lt;em&gt;Monthly Weather Review,&lt;/em&gt;&amp;nbsp;136(7): 2576-2591.&lt;/li&gt;&lt;li&gt;Mainelli M, &amp;nbsp;De Maria M, &amp;nbsp;Shay LK,&amp;nbsp; Goni G (2008) Application of Oceanic Heat Content Estimation to Operational Forecasting of Recent Atlantic Category 5 Hurricanes.&amp;nbsp;&lt;em&gt;Weather and Forecasting&amp;nbsp;&lt;/em&gt;23(1): 3-16.&lt;/li&gt;&lt;li&gt;Shay LK and Uhlhorn EW (2008) Loop Current Response to Hurricanes Isidore and Lili&lt;em&gt;. Monthly Weather Review&amp;nbsp;&lt;/em&gt;136(9): 3248&lt;/li&gt;&lt;li&gt;Jaimes, B. and L. K. Shay. (2009) Mixed layer cooling in mesoscale eddies during Katrina and Rita.&lt;em&gt;&amp;nbsp;Monthly Weather Review&lt;/em&gt;. 137(12),&amp;nbsp; 4188-4207.&lt;/li&gt;&lt;li&gt;Hallliwell, G., L. K. Shay, J. Brewster, and W. Teague, (2011) Evaluation and sensitivity analysis of an ocean model to hurricane Ivan in the northern Gulf of Mexico.&lt;em&gt;&amp;nbsp;Monthly Weather Review&lt;/em&gt;.&lt;strong&gt;&amp;nbsp;139(3),&amp;nbsp;&lt;/strong&gt;921-945.&lt;/li&gt;&lt;li&gt;Shay, L. K.,&amp;nbsp; and J. Brewster (2010).&amp;nbsp; Eastern Pacific oceanic heat content estimation for hurricane forecasting&lt;em&gt;. Monthly Weather Review .&amp;nbsp;&lt;/em&gt;138, 2110-2131.&lt;/li&gt;&lt;li&gt;Shay, L. K., P. C. Meyers and J. K. Brewster, (2012) Development and analysis of the Systematically Merged Atlantic Region Temperature and Salinity (SMARTS) climatology for ocean heat content estimates&lt;em&gt;. J. Atmos and Oceanogr. Tech.&lt;/em&gt;&amp;nbsp;(In Preparation)&lt;/li&gt;&lt;li&gt;Meyers, P. C., L. K. Shay, and&amp;nbsp; J. K. Brewster, (2013) Development and analysis of the Systematically Merged Atlantic Region Temperature and Salinity (SMARTS) climatology for ocean heat content estimates&lt;em&gt;. J. Atmos and Oceanogr. Tech.&lt;/em&gt;&amp;nbsp;(Submitted)&lt;/li&gt;&lt;/ul&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Depth of 20° and 26° Isotherms&lt;/div&gt;
          &lt;div class="field__item"&gt;Ocean Heat Content&lt;/div&gt;
          &lt;div class="field__item"&gt;Ocean Mixed-Layer Depth&lt;/div&gt;
          &lt;div class="field__item"&gt;Sea Surface Height Anomalies&lt;/div&gt;
          &lt;div class="field__item"&gt;Sea Surface Temperature - Geostationary&lt;/div&gt;
          &lt;div class="field__item"&gt;Sea Surface Temperature - Polar-orbiting&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 4&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/global" hreflang="en"&gt;Global&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-latency-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;24+ hours (Delayed)&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-latency-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;~36 h&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-resolution-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;2km+&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-resolution-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;0.25 degree gridded&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/cryosat-2" hreflang="en"&gt;CryoSat-2&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/goes-east" hreflang="en"&gt;GOES-East&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/goes-west" hreflang="en"&gt;GOES-West&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/himawari" hreflang="en"&gt;Himawari&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/jason-2" hreflang="en"&gt;JASON-2&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/jason-3" hreflang="en"&gt;JASON-3&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/metop" hreflang="en"&gt;MetOp&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/noaa" hreflang="en"&gt;NOAA&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/saral" hreflang="en"&gt;SARAL&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/abi" hreflang="en"&gt;ABI&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/ahi" hreflang="en"&gt;AHI&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/altika" hreflang="en"&gt;AltiKa&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/avhrr" hreflang="en"&gt;AVHRR&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/goes-imager" hreflang="en"&gt;GOES Imager&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/poseidon-3" hreflang="en"&gt;Poseidon-3&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/poseidon-3b" hreflang="en"&gt;Poseidon-3B&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/siral" hreflang="en"&gt;SIRAL&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;OSPO&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;CoastWatch Tools&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?layer0=OHCnad"&gt;CoastWatch Data Portal&lt;/a&gt;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;OSPO Tools&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://www.ospo.noaa.gov/products/ocean/ohc/"&gt;Satellite Ocean Heat Content Suite&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-sample-filenames field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Sample Filenames&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;ohc_naQG3_2012_215.nc, ohc_npQG3_2012_215.nc, ohc_spQG3_2012_215.nc&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-https-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;HTTPS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/pub/socd2/coastwatch/ocean_heat"&gt;https://coastwatch.noaa.gov/pub/socd2/coastwatch/ocean_heat&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-thredds-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;THREDDS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_coastwatch_ohc.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_coastwatch_ohc.html&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Thu, 17 Mar 2022 15:31:14 +0000</pubDate>
    <dc:creator>jebidiah.jeffery</dc:creator>
    <guid isPermaLink="false">94 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>
<item>
  <title>VIIRS (SNPP) Level 3</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/viirs-snpp-level-3</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;VIIRS (SNPP) Level 3&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;NOAA CoastWatch / OceanWatch / PolarWatch produces Level 3 sea surface temperature datasets using the VIIRS sensor aboard the SNPP satellite.&amp;nbsp;&lt;/p&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;jebidiah.jeffery&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2022-03-17T11:25:59-04:00" title="Thursday, March 17, 2022 - 11:25" class="datetime"&gt;Thu, 03/17/2022 - 11:25&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2022-08/VIIRS_legacySST_0.png?itok=uH2Lc4pk" width="650" height="455" alt="Map projection of sea surface temperature data over the Hawaiian islands" class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-short-name field--type-string field--label-above"&gt;
    &lt;div class="field__label"&gt;Short Names&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;VIIRS_L3&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Near real-time + 3 days&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Sea Surface Temperature&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Sea Surface Temperature - Polar-orbiting&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 3&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/coastwatch-us-regions" hreflang="en"&gt;CoastWatch US Regions&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-latency-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;0 Hours &amp;lt;= 24 Hours (NRT)&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-latency-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Less than 24 hours&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-resolution-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;100m &amp;lt; 2km&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-resolution-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;750m @ Nadir; ~1.7km at swath edge&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;STAR&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="http://coastwatch.noaa.gov/cw_html/NearRealTimeSearch.html?region=ALL&amp;amp;product=sst&amp;amp;sensor=VIIRS&amp;amp;daysback=1&amp;amp;desc=sat"&gt;CoastWatch Near Real-Time Search&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-sample-filenames field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Sample Filenames&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;2016_300_0530_npp_er.hdf [YYYY_JJJ_HHMM_PPP_RR.[png, tif, hdf]&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-https-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;HTTPS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://www.star.nesdis.noaa.gov/data/socd3/coastwatch/products/legacy_sst/viirs/"&gt;https://www.star.nesdis.noaa.gov/data/socd3/coastwatch/products/legacy_sst/viirs/&amp;nbsp;&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Thu, 17 Mar 2022 15:25:59 +0000</pubDate>
    <dc:creator>jebidiah.jeffery</dc:creator>
    <guid isPermaLink="false">88 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>
<item>
  <title>NOAA Geo-Polar Blended Global Sea Surface Temperature Analysis (Level 4)</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/noaa-geo-polar-blended-global-sea-surface-temperature-analysis-level-4</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;NOAA Geo-Polar Blended Global Sea Surface Temperature Analysis (Level 4)&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;The NOAA geo-polar blended SST is a daily 0.05° (~5km) global high resolution satellite-based sea surface temperature (SST) Level-4 analyses generated on an operational basis. This analysis combines&amp;nbsp;SST&amp;nbsp;data from US, Japanese and European geostationary infrared imagers, and low-earth orbiting infrared (U.S. and European)&amp;nbsp;SST&amp;nbsp;data, into a single high-resolution 5-km product.&amp;nbsp; The three flavors of blended SST products are night only; day/night, and diurnal warming.&amp;nbsp;&lt;/p&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;jebidiah.jeffery&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2022-03-17T11:24:13-04:00" title="Thursday, March 17, 2022 - 11:24" class="datetime"&gt;Thu, 03/17/2022 - 11:24&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2022-04/sst_geo-polar-blended_5km_2018288_800.png?itok=748NEtnT" width="650" height="266" alt="Plot of global Sea surface temperature data" class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
            &lt;div class="clearfix text-formatted field field--name-field-product-description field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;The National Oceanic and Atmospheric Administration's (NOAA) office of National Environmental Satellite Data and Services (NESDIS)&amp;nbsp;generates a daily 0.05° (~5km) global high resolution satellite-based sea surface temperature (SST) analyses on an operational basis. This&amp;nbsp;analysis combines&amp;nbsp;SST&amp;nbsp;data from U.S, Japanese and European geostationary infrared imagers, and low-Earth orbiting infrared (U.S. and European)&amp;nbsp;SST&amp;nbsp;data, into a single high-resolution 5-km product - this grid spacing was chosen to allow the resolution to approach the Nyquist sampling criterion for the mid-latitude Rossby radius (~20 km), in order to preserve mesoscale oceanographic features such as eddies and frontal meanders. The input&amp;nbsp;SST&amp;nbsp;data themselves are also processed in-house via the Geo-SST&amp;nbsp;Bayesian and physical retrieval approach (GOES-E/W, Meteosat-10), and, for polar-orbiting and Himawari-8, the Advanced Clear Sky Processor for Oceans (ACSPO).&lt;/p&gt;&lt;h3&gt;Algorithms&lt;/h3&gt;&lt;p&gt;The analysis employs a rigorous multi-scale optimal interpolation (OI) methodology that approximates the Kalman filter, together with a data-adaptive correlation length scale, to ensure a good balance between detail preservation and noise reduction. The multi-scale OI employs a quad-tree approach avoids the concomitant computation times that result from pursuing a straight OI methodology, while running the analysis at three different correlation scales (coarse, medium, fine) preserves mathematical rigor. The algorithm is fully described in Khellah&amp;nbsp;&lt;em&gt;et al.&lt;/em&gt;&amp;nbsp;(2005).&lt;/p&gt;&lt;h3&gt;Validation&lt;/h3&gt;&lt;p&gt;The product accuracy verified against globally distributed buoys is ~0.02 K, with a robust standard deviation of ~0.25 K. The new analysis has proven a significant success even when compared to other products that purport to have a similar resolution. This analysis forms the basis for other operational environmental products such as coral reef bleaching risk and ocean heat content for tropical cyclone prediction.&lt;/p&gt;&lt;h3&gt;Products&lt;/h3&gt;&lt;p&gt;Three blended SST analysis products are generated:&amp;nbsp;&amp;nbsp;&amp;nbsp;&lt;/p&gt;&lt;ol&gt;&lt;li&gt;Day/night which combines both day and night day; &lt;/li&gt;&lt;li&gt;Night time only which uses only nighttime data;&lt;/li&gt;&lt;li&gt;Diurnally Corrected Analysis which corrects for diurnal fluctuations on the Day/ night Analysis.&amp;nbsp;&lt;/li&gt;&lt;/ol&gt;&lt;p&gt;The near real-time products are generated operationally at NOAA/OSPO and re-served&amp;nbsp;by CoastWatch for the convenience of a broader number of users.&amp;nbsp;The night only product has been reprocessed (see below) and is available from Sept. 2002 to 2016.&lt;/p&gt;&lt;h3&gt;Reprocessing&lt;/h3&gt;&lt;p&gt;The analysis has been run for the period 1 Sept. 2002 through 31 Dec. 2016, incorporating reprocessed geostationary and polar-orbiting&amp;nbsp;SSTs. This has been done primarily to furnish a consistent reference baseline for anomaly-based products such as those generated by Coral Reef Watch.&lt;/p&gt;&lt;h3&gt;Future enhancements&lt;/h3&gt;&lt;p&gt;Forthcoming enhancements include the incorporation of microwave&amp;nbsp;SST&amp;nbsp;products from low-earth orbiting platforms (e.g. GCOM-W1) in order to improve resolution of&amp;nbsp;SST&amp;nbsp;features in areas of persistent cloud and correct for diurnal effects via a turbulence model of upper ocean heating.&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-short-name field--type-string field--label-above"&gt;
    &lt;div class="field__label"&gt;Short Names&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;GEO-POLAR&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-start-date field--type-datetime field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Start Date&lt;/div&gt;
              &lt;div class="field__item"&gt;September 1, 2022&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;2002 - Present&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Sea Surface Temperature&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-documentation field--type-text-long field--label-hidden field__item"&gt;&lt;ul&gt;&lt;li&gt;Maturi, E., A. Harris, J. Mittaz, J. Sapper, G. Wick, X. Zhu, P. Dash, and P. Koner,&amp;nbsp;2017:&amp;nbsp;&lt;a href="https://journals.ametsoc.org/doi/abs/10.1175/BAMS-D-15-00002.1"&gt;A New High-Resolution Sea Surface Temperature Blended Analysis&lt;/a&gt;.&amp;nbsp;&lt;em&gt;Bull. Amer. Meteor. Soc.,&lt;/em&gt;&amp;nbsp;&lt;strong&gt;98&lt;/strong&gt;,&amp;nbsp;1015–1026,&amp;nbsp;&lt;a href="https://doi.org/10.1175/BAMS-D-15-00002.1"&gt;https://doi.org/10.1175/BAMS-D-15-00002.1&lt;/a&gt; &lt;/li&gt;&lt;li&gt;Ignatov, Alexander, Xinjia Zhou, Boris Petrenko, Xingming Liang, Yury Kihai, Prasanjit Dash, John Stroup, John Sapper, and Paul DiGiacomo. "AVHRR GAC SST Reanalysis Version 1 (RAN1)."&amp;nbsp;&lt;em&gt;Remote Sensing&lt;/em&gt;&amp;nbsp;8, no. 4 (April 9, 2016): 315.&amp;nbsp;&lt;a href="http://dx.doi.org/10.3390/rs8040315"&gt;doi:10.3390/rs8040315&lt;/a&gt;.&lt;/li&gt;&lt;li&gt;Liu, Gang, Scott F. Heron, C. Mark Eakin, Frank E. Muller-Karger, Maria Vega-Rodriguez, Liane S. Guild, Jacqueline L. De La Cour, et al. "Reef-Scale Thermal Stress Monitoring of Coral Ecosystems: New 5-Km Global Products from NOAA Coral Reef Watch."&amp;nbsp;&lt;em&gt;Remote Sensing&lt;/em&gt;&amp;nbsp;6, no. 11 (November 20, 2014): 11579-606.&amp;nbsp;&lt;a href="http://dx.doi.org/10.3390/rs61111579"&gt;doi:10.3390/rs61111579&lt;/a&gt;.&lt;/li&gt;&lt;li&gt;Donlon, C.J., Martin, M., Stark, J., Roberts-Jones, J., Fiedler, E., and Wimmer, W., The Operational Sea Surface Temperature and Sea Ice Analysis (OSTIA) system,&amp;nbsp;&lt;em&gt;Remote Sens. Environ.,&lt;/em&gt;&amp;nbsp;&lt;strong&gt;116&lt;/strong&gt;, 140-158,&amp;nbsp;&lt;a href="http://dx.doi.org/10.1016/j.rse.2010.10.017"&gt;doi:10.1016/j.rse.2010.10.017&lt;/a&gt;, 2012.&lt;/li&gt;&lt;li&gt;Reynolds, R.W., and Chelton, D.B., Comparisons of daily sea surface temperature analyses for 2007-08,&amp;nbsp;&lt;em&gt;J. Climate&lt;/em&gt;,&amp;nbsp;&lt;strong&gt;23&lt;/strong&gt;, 3545-3562, 2010.&lt;/li&gt;&lt;li&gt;Khellah, F., P.W. Fieguth, M.J. Murray and M.R. Allen, Statistical Processing of Large Image Sequences,&amp;nbsp;&lt;em&gt;IEEE Trans. Geosci. Rem. Sens.&lt;/em&gt;,&amp;nbsp;&lt;strong&gt;14&lt;/strong&gt;, 80-93, 2005&lt;/li&gt;&lt;li&gt;Liu, Gang, Alan E. Strong, and William Skirving. "Remote Sensing of Sea Surface Temperatures during 2002 Barrier Reef Coral Bleaching."&amp;nbsp;&lt;em&gt;Eos, Transactions American Geophysical Union&lt;/em&gt;&amp;nbsp;84, no. 15 (April 15, 2003): 137-41.&amp;nbsp;&lt;a href="http://dx.doi.org/10.1029/2003EO150001"&gt;doi:10.1029/2003EO150001&lt;/a&gt;.&lt;/li&gt;&lt;li&gt;Harris, A., and Maturi, E., Assimilation of Satellite Sea Surface Temperature Retrievals.&amp;nbsp;&lt;em&gt;Bull. Amer. Meteor. Soc.&lt;/em&gt;,&amp;nbsp;&lt;strong&gt;84&lt;/strong&gt;, 1575-1580, 2003.&amp;nbsp;&lt;a href="http://dx.doi.org/10.1175/BAMS-84-11-1575"&gt;doi:10.1175/BAMS-84-11-1575&lt;/a&gt;&amp;nbsp;Thiébaux, J., Rogers, E., Wang, W., and Katz, B., A New High-Resolution Blended Real-Time Global Sea Surface Temperature Analysis.&amp;nbsp;&lt;em&gt;Bull. Amer. Meteor. Soc.&lt;/em&gt;,&amp;nbsp;&lt;strong&gt;84&lt;/strong&gt;, 645-656, 2003.&lt;/li&gt;&lt;/ul&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Sea Surface Temperature - Geostationary&lt;/div&gt;
          &lt;div class="field__item"&gt;Sea Surface Temperature - Polar-orbiting&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 4&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/global" hreflang="en"&gt;Global&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-latency-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;0 Hours &amp;lt;= 24 Hours (NRT)&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-latency-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Less than 24 hours&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-resolution-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;2km+&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-resolution-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;5km&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/goes-east" hreflang="en"&gt;GOES-East&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/goes-west" hreflang="en"&gt;GOES-West&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/himawari" hreflang="en"&gt;Himawari&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/meteosat" hreflang="en"&gt;Meteosat&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/metop" hreflang="en"&gt;MetOp&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/abi" hreflang="en"&gt;ABI&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/ahi" hreflang="en"&gt;AHI&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/avhrr" hreflang="en"&gt;AVHRR&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/seviri" hreflang="en"&gt;SEVIRI&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;OSPO&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=29.40&amp;amp;lon=-94.20&amp;amp;z=2&amp;amp;layer0=basemapWI&amp;amp;layer1=ghrsstBlendedOSPOd"&gt;CoastWatch Data Portal&lt;/a&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/NearRealTimeSearch.html?region=ALL&amp;amp;product=sst&amp;amp;sensor=Multi&amp;amp;daysback=3&amp;amp;desc=sat"&gt;CoastWatch Near Real-Time Search&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-sample-filenames field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Sample Filenames&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;GPBCW_B2016298_WW00_sst_5km_night.hdf&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-https-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;HTTPS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Top Level:&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/pub/socd2/coastwatch/sst_blended/sst5km/" dir="ltr"&gt;https://coastwatch.noaa.gov/pub/socd2/coastwatch/sst_blended/sst5km/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Night (includes access to OSPO near real time and STAR reprocessed Sept. 2002 to 2016)&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/pub/socd2/coastwatch/sst_blended/sst5km/night/"&gt;https://coastwatch.noaa.gov/pub/socd2/coastwatch/sst_blended/sst5km/night/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Day + Night:&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/pub/socd2/coastwatch/sst_blended/sst5km/daynight/"&gt;https://coastwatch.noaa.gov/pub/socd2/coastwatch/sst_blended/sst5km/daynight/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Diurnal:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/pub/socd2/coastwatch/sst_blended/sst5km/diurnal/"&gt;https://coastwatch.noaa.gov/pub/socd2/coastwatch/sst_blended/sst5km/diurnal/&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-thredds-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;THREDDS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;table&gt;&lt;tbody&gt;&lt;tr&gt;&lt;td&gt;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_coastwatch_sst_blended_ghrsst.html"&gt;https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_coastwatch_sst_blended_ghrsst.html&lt;/a&gt;&lt;/td&gt;&lt;/tr&gt;&lt;/tbody&gt;&lt;/table&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-erddap-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;ERDDAP&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=blended+SST+Geo-polar"&gt;https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=blended+SST+Geo-polar&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Thu, 17 Mar 2022 15:24:13 +0000</pubDate>
    <dc:creator>jebidiah.jeffery</dc:creator>
    <guid isPermaLink="false">84 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>
<item>
  <title>ACSPO Global SST from VIIRS</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/acspo-global-sst-viirs</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;ACSPO Global SST from VIIRS&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;These VIIRS SST data are produced using the NOAA Advanced Clear-Sky Processor for Ocean (ACSPO) SST system, from the afternoon NPP, N20 and N21 satellites, in two formats: L2P and L3U (uncollated). The data are reported in 10 min granule files in NetCDF4 format, compliant with the GHRSST Data Specifications v2 (GDS2). For each satellite, there are 144 granules per 24 hr interval, with a total data volume of ~7.1 GB/day for L2P, and ~0.4 GB/day for L3U.&lt;/p&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;jebidiah.jeffery&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2022-03-17T11:23:21-04:00" title="Thursday, March 17, 2022 - 11:23" class="datetime"&gt;Thu, 03/17/2022 - 11:23&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2022-08/20140103210000-STAR-L3U_GHRSST-SSTskin-VIIRS_NPP-ACSPO_V2.40-v02.0-fv01.0_800_0.png?itok=hMyrPDOK" width="650" height="298" alt="Global map projection displaying a granule of SST data" class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
            &lt;div class="clearfix text-formatted field field--name-field-product-description field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;These&amp;nbsp;VIIRS SST data are produced using the NOAA Advanced Clear-Sky Processor for Ocean (ACSPO) SST system, from the afternoon NPP and N20 satellites, in two formats: L2P and L3U (uncollated). The data are reported in 10 min granule files in NetCDF4 format, compliant with the GHRSST Data Specifications v2 (GDS2). There are 144 granules per 24 hour&amp;nbsp;interval, with a total data volume&amp;nbsp;of ~7&amp;nbsp;GB/day for L2P, and ~0.5 GB/day for L3U (per-sensor)&amp;nbsp;.&lt;/p&gt;&lt;p&gt;The L2P/L3U SST data is produced at NOAA STAR&amp;nbsp;using the official enterprise ACSPO algorithms V2.80.&amp;nbsp;A 2-week rotated buffer of the NRT data is provided here on Coast Watch, whereas the full data set is&amp;nbsp;available from PO.DAAC and NOAA NCEI (see links under "Data Access"). Note that the NCEI archive has not been backfilled with ACSPO V2.80&amp;nbsp;and therefore contains&amp;nbsp;SST data from earlier ACSPO versions, while PO.DAAC contains the full V2.80 archive. A complete archive of ACSPO V2.80 data is available on the Coast Watch archive for L3U data only&amp;nbsp;due to large L2P&amp;nbsp;data volume.&lt;/p&gt;&lt;p&gt;ACSPO retrievals are made in full VIIRS swath (~3,000 km). For data assimilation applications (such as production of L4 analyses, especially those that blend satellite and in situ data), correction for the Sensor-Specific Error Statistics (SSES; reported in ACSPO files; Petrenko et al., 2016) biases is strongly recommended. The NOAA SST team worked with the NOAA calibration team and&amp;nbsp;used an up-to-date converter from RDR (L0) to SDR (L1b), to address quarterly spikes in day-time SST bias which coincide with quarterly warm-up-cool-down calibration exercises onboard NPP/N20. The algorithms used in VIIRS reanalysis version 3 (RAN3) are documented in Jonasson et al., 2022.&lt;/p&gt;&lt;p&gt;In each valid water pixel (defined as ocean, sea, lake or river, up to 5km inland; note that in "invalid" pixels, defined as those with &amp;gt;5km inland, fill values are reported), the following layers are reported in both L2P and L3U, among others: SSTs derived using multi-channel SST (MCSST; night) and Non-Linear SST (NLSST; day) algorithms (Petrenko et al., 2014); ACSPO clear-sky mask (ACSM; provided in each pixel as part of l2p_flags; Petrenko et al., 2010); SSES bias and standard deviation (Petrenko et al., 2016); GFS/MERRA&amp;nbsp;wind speed; and ACSPO SST minus reference (Canadian Met Centre L4 SST).&lt;/p&gt;&lt;p&gt;Only ACSM "confidently clear" pixels (equivalent to GDS2 "quality level"=5; QLs are also reported for each pixel) should be used. The ACSM also provides day/night, land, ice, twilight, and glint flags. Note that users of ACSPO data have the flexibility to ignore the ACSM, derive their own clear-sky mask, and use SSTs in those pixels.&lt;/p&gt;&lt;p&gt;Both L2P and L3U SSTs are monitored and validated against in situ data (Xu and Ignatov, 2014) in SQUAM (Dash et al., 2010) and ARMS systems, and brightness temperatures are monitored in MICROS (Liang and Ignatov, 2011).&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-short-name field--type-string field--label-above"&gt;
    &lt;div class="field__label"&gt;Short Names&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;L2P: ACSPO_VIIRS_L2P&lt;/div&gt;
          &lt;div class="field__item"&gt;L3U: ACSPO_VIIRS_L3U&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-start-date field--type-datetime field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Start Date&lt;/div&gt;
              &lt;div class="field__item"&gt;February 1, 2012&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;NRT NPP L2P/L3U: 1 Feb 2012 to present&lt;br&gt;NRT N20&amp;nbsp;L2P/L3U: 5&amp;nbsp;Jan&amp;nbsp;2018&amp;nbsp;to present&lt;br&gt;NRT N21&amp;nbsp;L2P/L3U: 19&amp;nbsp;March&amp;nbsp;2023&amp;nbsp;to present&lt;br&gt;RAN NPP L2P/L3U: 1 Feb 2012 to present&lt;br&gt;RAN N20&amp;nbsp;L2P/L3U: 5&amp;nbsp;Jan&amp;nbsp;2018&amp;nbsp;to present&lt;br&gt;RAN N21&amp;nbsp;L2P/L3U: 19 March&amp;nbsp;2023&amp;nbsp;to present&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Sea Surface Temperature&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-documentation field--type-text-long field--label-hidden field__item"&gt;&lt;ul&gt;&lt;li&gt;Jonasson, O.;&amp;nbsp;Ignatov, A.; Pryamitsyn, V.; Petrenko, B.; Kihai, Y.&amp;nbsp;JPSS VIIRS SST Reanalysis Version 3. Remote Sens.&amp;nbsp;2022, 14, 3476.&amp;nbsp;&lt;a href="https://doi.org/10.3390/rs14143476"&gt;doi:10.3390/rs14143476&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Dash, P., A. Ignatov, Y. Kihai &amp;amp; J. Sapper, 2010: The SST Quality Monitor (SQUAM). JTech, 27, 1899-1917,&amp;nbsp;&lt;a href="http://dx.doi.org/10.1175/2010JTECHO756.1"&gt;doi:10.1175/2010JTECHO756.1&lt;/a&gt;,&amp;nbsp;&lt;a href="http://www.star.nesdis.noaa.gov/sod/sst/squam/"&gt;www.star.nesdis.noaa.gov/sod/sst/squam/&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Ding, Y., A. Ignatov, I. Gladkova, M. Crosberg, and C. Chu, 2017: ACSPO Regional Monitor for SST (ARMS). BoM - NOAA SST Workshop, 18-21 April 2017, Melbourne, Australia (&lt;a href="ftp://ftp.star.nesdis.noaa.gov/pub/sod/osb/aignatov/GHRSST/2017-04-BoM-NOAA/2017_04_20_1400_ARMS_Ding_v01.pptx"&gt;presentation&lt;/a&gt;),&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/sod/sst/arms/"&gt;www.star.nesdis.noaa.gov/sod/sst/arms/&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Liang, X. &amp;amp; A. Ignatov, 2011: Monitoring of IR Clear-sky Radiances over Oceans for SST (MICROS). JTech, 28, 1228-1242,&amp;nbsp;&lt;a href="http://dx.doi.org/10.1175/JTECH-D-10-05023.1"&gt;doi:10.1175/JTECH-D-10-05023.1&lt;/a&gt;,&amp;nbsp;&lt;a href="http://www.star.nesdis.noaa.gov/sod/sst/micros/"&gt;www.star.nesdis.noaa.gov/sod/sst/micros/&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Xu, F. &amp;amp; A. Ignatov, 2014: In situ SST Quality Monitor (iQuam). JTech, 31, 164-180,&amp;nbsp;&lt;a href="http://dx.doi.org/10.1175/JTECH-D-13-00121.1"&gt;doi:10.1175/JTECH-D-13-00121.1&lt;/a&gt;,&amp;nbsp;&lt;a href="http://www.star.nesdis.noaa.gov/sod/sst/iquam/"&gt;www.star.nesdis.noaa.gov/sod/sst/iquam/&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Petrenko, B., A. Ignatov, Y. Kihai, P. Dash, 2016: Sensor-Specific Error Statistics for SST in the Advanced Clear-Sky Processor for Oceans. JTech, 33, 345-359,&amp;nbsp;&lt;a href="http://dx.doi.org/10.1175/JTECH-D-15-0166.1"&gt;doi:10.1175/JTECH-D-15-0166.1&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Petrenko, B., A. Ignatov, Y. Kihai, J. Stroup, P. Dash, 2014: Evaluation and Selection of SST Regression Algorithms for JPSS VIIRS. JGR, 119, 4580-4599,&amp;nbsp;&lt;a href="http://dx.doi.org/10.1002/2013JD020637"&gt;doi:10.1002/2013JD020637&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Petrenko, B., A. Ignatov, Y. Kihai, and A. Heidinger, 2010: Clear-Sky Mask for ACSPO. JTech, 27, 1609-1623,&amp;nbsp;&lt;a href="http://dx.doi.org/10.1175/2010JTECHA1413.1"&gt;doi:10.1175/2010JTECHA1413.1&lt;/a&gt;&lt;/li&gt;&lt;/ul&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Sea Surface Temperature - Polar-orbiting&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 2&lt;/div&gt;
          &lt;div class="field__item"&gt;Level 3&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/global" hreflang="en"&gt;Global&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-citation field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;The&amp;nbsp;ACSPO&amp;nbsp;NPP/N20/N21&amp;nbsp;VIIRS&amp;nbsp;RAN3&amp;nbsp;data set is provided by&amp;nbsp;NOAA&amp;nbsp;STAR. We strongly recommend contacting&amp;nbsp;NOAA&amp;nbsp;SST team led by A. Ignatov before the data are used for any publication or presentation.&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-latency-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;0 Hours &amp;lt;= 24 Hours (NRT)&lt;/div&gt;
          &lt;div class="field__item"&gt;24+ hours (Delayed)&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-latency-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;NRT: &amp;lt;6 hours&lt;br&gt;RAN: 8 weeks&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-resolution-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;100m &amp;lt; 2km&lt;/div&gt;
          &lt;div class="field__item"&gt;2km+&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-resolution-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;table&gt;&lt;tbody&gt;&lt;tr&gt;&lt;td&gt;L2P: 0.75km @ Nadir; ~1.5km @ swath edge&lt;br&gt;L3U: 0.02°&lt;/td&gt;&lt;/tr&gt;&lt;/tbody&gt;&lt;/table&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/noaa" hreflang="en"&gt;NOAA&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-algorit field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Algorithms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/processing-algorithms/acspo" hreflang="en"&gt;ACSPO&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;STAR&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Near Real-Time (NRT)&amp;nbsp;[14 Day Rotated Buffer]&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;NPP + N20 + N21 L2P:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cw_polygon_search.html"&gt;CoastWatch Data Search&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-sample-filenames field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Sample Filenames&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;L2P: 20120301001000-STAR-L2P_GHRSST-SSTsubskin-VIIRS_NPP-ACSPO_V2.80-v02.0-fv01.0.nc&amp;nbsp;&lt;br&gt;L3U: 20120301001000-STAR-L3U_GHRSST-SSTsubskin-VIIRS_NPP-ACSPO_V2.80-v02.0-fv01.0.nc&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-https-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;HTTPS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Near Real-Time (NRT)&amp;nbsp;[14 Day Rotated Buffer]&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;NPP L2P:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/npp/l2p"&gt;https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/npp/l2p&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L2P:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/n20/l2p"&gt;https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/n20/l2p&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N21 L2P:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/n21/l2p"&gt;https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/n21/l2p&lt;/a&gt;&lt;/p&gt;&lt;p&gt;NPP L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/npp/l3u"&gt;https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/npp/l3u&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/n20/l3u"&gt;https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/n20/l3u&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N21 L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/n21/l3u"&gt;https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/nrt/viirs/n21/l3u&lt;/a&gt;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;Reanalysis Version 3 (RAN3) [Scientific Quality.&amp;nbsp;New data Is added in Delayed Mode (DM)]&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;NPP L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/ran/viirs/npp/l3u"&gt;https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/ran/viirs/npp/l3u&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/ran/viirs/n20/l3u"&gt;https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/ran/viirs/n20/l3u&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/ran/viirs/n21/l3u"&gt;https://coastwatch.noaa.gov/data/pub0012/coastwatch/sst/ran/viirs/n21/l3u&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-metadata- field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;*NRT - Near-Real Time data (1-3 hour latency).&lt;br&gt;*DM - Delayed mode "scientific quality" SST. Produced on a 8-week delay.&lt;br&gt;*RAN2 - Reanalysis-2 of VIIRS SST (NPP: Feb'2012-Apr'2019; N20: Jan'2018-Apr'2019). Produced using ACSPO V2.61.&lt;br&gt;*RAN3 - Reanalysis-3 of VIIRS SST (NPP: Feb'2012-Dec'2021; N20: Jan'2018-Dec'2021). Produced using ACSPO V2.80.&lt;br&gt;NPP - Suomi NPP satellite platform&lt;br&gt;N20 - NOAA-20 satellite platform&lt;br&gt;N21 - NOAA-21 satellite platform&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="clearfix text-formatted field field--name-field-product-thredds-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;THREDDS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Near Real-Time (NRT)&amp;nbsp;[14 Day Rotated Buffer]&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;NPP L2P:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/catalog/swathNPPVIIRSNRTL2PWW00/catalog.html"&gt;https://coastwatch.noaa.gov/thredds/catalog/swathNPPVIIRSNRTL2PWW00/catalog.html&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L2P:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/catalog/swathN20VIIRSNRTL2PWW00/catalog.html"&gt;https://coastwatch.noaa.gov/thredds/catalog/swathN20VIIRSNRTL2PWW00/catalog.html&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N21 L2P:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/catalog/swathN21VIIRSNRTL2PWW00/catalog.html"&gt;https://coastwatch.noaa.gov/thredds/catalog/swathN21VIIRSNRTL2PWW00/catalog.html&lt;/a&gt;&lt;/p&gt;&lt;p&gt;NPP L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/catalog/gridNPPVIIRSNRTL3UWW00/catalog.html"&gt;https://coastwatch.noaa.gov/thredds/catalog/gridNPPVIIRSNRTL3UWW00/catalog.html&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/catalog/gridN20VIIRSNRTL3UWW00/catalog.html"&gt;https://coastwatch.noaa.gov/thredds/catalog/gridN20VIIRSNRTL3UWW00/catalog.html&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N21 L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/catalog/gridN21VIIRSNRTL3UWW00/catalog.html"&gt;https://coastwatch.noaa.gov/thredds/catalog/gridN21VIIRSNRTL3UWW00/catalog.html&lt;/a&gt;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;Reanalysis Version 3 (RAN3) [Scientific Quality.&amp;nbsp;New data is added in Delayed Mode (DM)]&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;NPP L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/catalog/gridNPPVIIRSSCIENCEL3UWW00/catalog.html"&gt;https://coastwatch.noaa.gov/thredds/catalog/gridNPPVIIRSSCIENCEL3UWW00/catalog.html&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/catalog/gridN20VIIRSSCIENCEL3UWW00/catalog.html"&gt;https://coastwatch.noaa.gov/thredds/catalog/gridN20VIIRSSCIENCEL3UWW00/catalog.html&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N21 L3U:&amp;nbsp;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/catalog/gridN21VIIRSSCIENCEL3UWW00/catalog.html"&gt;https://coastwatch.noaa.gov/thredds/catalog/gridN21VIIRSSCIENCEL3UWW00/catalog.html&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-po-daac-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;PO.DAAC Archive&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Reanalysis / Reprocessed (RAN3)* [New data is added in NRT* and overwritten by DM* data with a 8 week delay]&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;NPP L2P: &lt;a href="http://doi.org/10.5067/GHVRS-2PO28"&gt;10.5067/GHVRS-2PO28&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L2P: &lt;a href="http://doi.org/10.5067/GHV20-2PO28"&gt;10.5067/GHV20-2PO28&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N21 L2P: &lt;a href="https://doi.org/10.5067/GHN21-2P280"&gt;10.5067/GHN21-2P280&lt;/a&gt;&lt;/p&gt;&lt;p&gt;NPP L3U:&amp;nbsp;&lt;a href="http://doi.org/10.5067/GHVRS-3UO28"&gt;10.5067/GHVRS-3UO28&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L3U: &lt;a href="http://doi.org/10.5067/GHV20-3UO28"&gt;10.5067/GHV20-3UO28&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N21 L3U: &lt;a href="https://doi.org/10.5067/GHN21-3U280"&gt;10.5067/GHN21-3U280&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-ncei-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;NCEI Archive&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Reanalysis / Reprocessed (RAN2)* [New data is added in NRT]&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;NPP L2P: &lt;a href="https://doi.org/10.7289/v5pr7sx5"&gt;10.7289/v5pr7sx5&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L2P: &lt;a href="https://doi.org/10.25921/sfs7-9688"&gt;10.25921/sfs7-9688&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N21 L2P: &lt;a href="https://doi.org/10.25921/5mbf-ma56"&gt;10.25921/5mbf-ma56&lt;/a&gt;&lt;/p&gt;&lt;p&gt;NPP L3U: &lt;a href="https://doi.org/10.7289/v5kk98s8"&gt;10.7289/v5kk98s8&lt;/a&gt;&lt;/p&gt;&lt;p&gt;N20 L3U: &lt;a href="https://doi.org/10.25921/7c1m-rw73"&gt;10.25921/7c1m-rw73&lt;/a&gt;&lt;br&gt;&lt;br&gt;N21 L3U: &lt;a href="https://doi.org/10.25921/xkhb-5e96"&gt;10.25921/xkhb-5e96&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Thu, 17 Mar 2022 15:23:21 +0000</pubDate>
    <dc:creator>jebidiah.jeffery</dc:creator>
    <guid isPermaLink="false">82 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>
<item>
  <title>VIIRS - Sea Ice Concentration, Ice Thickness, Ice Surface Temperature</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/viirs-sea-ice-concentration-ice-thickness-ice-surface-temperature</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;VIIRS - Sea Ice Concentration, Ice Thickness, Ice Surface Temperature&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;VIIRS Sea Ice Concentration, Sea Ice Thickness and Ice Surface Temperature NOAA CoastWatch/OceanWatch/PolarWatch Level 3, Daily and daily 4-day rolling merged, mapped composites in both polar stereographic projections and CW sector mapped for Northern and Southern hemispheres.&lt;/p&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;jebidiah.jeffery&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2022-03-17T10:32:41-04:00" title="Thursday, March 17, 2022 - 10:32" class="datetime"&gt;Thu, 03/17/2022 - 10:32&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2022-08/VIIRS_VIIRS_iceConc_polar_sector.png?itok=hUXeb3NU" width="650" height="244" alt="Polar stereographic projection of polar sea ice concentrations over the Arctic Ocean and Alaska" class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
            &lt;div class="clearfix text-formatted field field--name-field-product-description field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;VIIRS Sea Ice Concentration, Sea Ice Thickness and Ice Surface Temperature, NOAA CoastWatch/OceanWatch/PolarWatch Level 3, Daily and daily 4-day rolling merge, mapped composites are nominally at native spatial resolution (~750 m),&amp;nbsp;clear sky only.&amp;nbsp;&amp;nbsp;&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;North Polar (&lt;strong&gt;NP06&lt;/strong&gt;) and South Polar (&lt;strong&gt;SP06&lt;/strong&gt;) are&amp;nbsp;&lt;strong&gt;Polar Stereographic projected&lt;/strong&gt;&amp;nbsp;daily composites&lt;/li&gt;
	&lt;li&gt;Six&amp;nbsp;&lt;strong&gt;Northern&amp;nbsp;&lt;/strong&gt;hemisphere&lt;strong&gt;&amp;nbsp;&lt;/strong&gt;&amp;nbsp;and six&amp;nbsp;&lt;strong&gt;Southern&amp;nbsp;&lt;/strong&gt;hemisphere high latitude&amp;nbsp;CoastWatch VIIRS sectors&amp;nbsp; (see sector map below)
	&lt;ul&gt;
		&lt;li&gt;North Sectors:&amp;nbsp; UZ, VZ, WZ, XZ, YZ, ZZ&lt;/li&gt;
		&lt;li&gt;South Sectors:&amp;nbsp; UW, VW, WU, XW, YW, ZW&lt;/li&gt;
	&lt;/ul&gt;
	&lt;/li&gt;
&lt;/ul&gt;

&lt;p&gt;&lt;img alt="CoastWatch Regional Sectors" data-entity-type="file" data-entity-uuid="ddc81aab-3d50-4cc4-a00a-04795088000a" height="190" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/inline-images/Figure02.png" width="363" loading="lazy"&gt;&lt;/p&gt;

&lt;p&gt;Map of CoastWatch regional sectors&lt;/p&gt;

&lt;p&gt;Data Provider:&amp;nbsp;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/jpss/seaice.php"&gt;JPSS Center for Satellite Applications and Research Cryosphere Team&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;STAR Cryosphere Environmental Data Record Team Lead:&amp;nbsp; Jeff Key&lt;/p&gt;

&lt;p&gt;&lt;strong&gt;Sea ice age&lt;/strong&gt;&amp;nbsp;is defined as the time that has passed since the formation of the surface layer of an ice covered region of the ocean.&lt;/p&gt;

&lt;p&gt;&lt;strong&gt;Sea ice concentration&lt;/strong&gt;&amp;nbsp;is the fraction of a horizontal cell covered by ice.&lt;/p&gt;

&lt;p&gt;NDE Enterprise Ice Age/Thickness Algorithm&lt;/p&gt;

&lt;p&gt;One-dimensional Thermodynamic Ice Model (OTIM):&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;Based on the surface energy budget at thermo-equilibrium state&lt;/li&gt;
	&lt;li&gt;Independent of historical records for ice thickness and age estimation&lt;/li&gt;
	&lt;li&gt;Capable of retrieving daytime and nighttime sea and lake ice thickness under both clear and cloudy sky conditions&lt;/li&gt;
&lt;/ul&gt;

&lt;p&gt;IDPS Sea Ice Concentration is an intermediate product (IP)&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;Algorithm computes ice fractions based on ice and water tie points determined from VIIRS I1 (0.64 µm) and I2 (0.865 µm) reflectance and surface temperature from the VIIRS Surface Temperature IP&lt;/li&gt;
&lt;/ul&gt;

&lt;p&gt;Enterprise Sea Ice Concentration Algorithm&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;Use threshold tests to detect possible ice cover: Daytime and Nighttime&lt;/li&gt;
	&lt;li&gt;Use a tie-point algorithm to derive reflectance (temperature) for pure ice pixel, and then calculate ice concentration&lt;/li&gt;
&lt;/ul&gt;

&lt;p&gt;&lt;a href="https://stratus.ssec.wisc.edu/cgi-bin/amsr2snow_prod?seaice"&gt;https://stratus.ssec.wisc.edu/cgi-bin/amsr2snow_prod?seaice&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Daily and&lt;br&gt;
Daily 4-day rolling merge&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Polar Sea Ice&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-documentation field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;Wang, Xuanji &amp;nbsp;and Key, Jeffrey R., NOAA/NESDIS Center for Satellite Applications and Research, Algorithm Theoretical Basis Document:&amp;nbsp;&amp;nbsp;&lt;strong&gt;ABI and VIIRS Ice Thickness and Age, Version 1.0&lt;/strong&gt;, 17 December 2015.&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;&lt;a href="https://www.star.nesdis.noaa.gov/jpss/documents/ATBD/ATBD_EPS_Cryosphere_IceAge_v1.0.pdf"&gt;Ice Age ATBD (NDE)&lt;/a&gt;,&amp;nbsp;(PDF, 2.6 MB)&lt;/li&gt;
&lt;/ul&gt;

&lt;p&gt;Liu, Yinghui&amp;nbsp;and Key, Jeffrey R.,, NOAA/NESDIS Center for Satellite Applications and Research, Algorithm Theoretical Basis Document:&amp;nbsp;&amp;nbsp;&lt;strong&gt;Ice Surface Temperature, Ice Concentration,&amp;nbsp;and Ice Cover, Version 1.0&lt;/strong&gt;, 17 December 2015.&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;&lt;a href="https://www.star.nesdis.noaa.gov/jpss/documents/ATBD/ATBD_EPS_Cryosphere_IST_IceCover_v1.0.pdf"&gt;Ice Cover ATBD (NDE)&lt;/a&gt;,&amp;nbsp;(PDF, 1.69 MB)&lt;/li&gt;
&lt;/ul&gt;

&lt;p&gt;&lt;em&gt;EDR Long Term-Monitoring&lt;/em&gt;&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;Data Viewer at STAR:&amp;nbsp; VIIRS&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/jpss/EDRs/products_cryosphere.php"&gt;Sea Ice&lt;/a&gt;; AMSR-2/&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/jpss/EDRs/products_gcom.php"&gt;GCOM-W1&lt;/a&gt;&amp;nbsp;Sea Ice&lt;/li&gt;
	&lt;li&gt;University of Wisconsin Cryo Team&amp;nbsp;&lt;a href="http://stratus.ssec.wisc.edu/ice-products/anibrowser/index.php"&gt;CIMSS website&lt;/a&gt;&lt;/li&gt;
&lt;/ul&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Sea Ice Concentration&lt;/div&gt;
          &lt;div class="field__item"&gt;Sea Ice Temperature&lt;/div&gt;
          &lt;div class="field__item"&gt;Sea Ice Thickness&lt;/div&gt;
          &lt;div class="field__item"&gt;Visible And Near IR Radiometry&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 3&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/coastwatch-global-sectors" hreflang="en"&gt;CoastWatch Global Sectors&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/polar-articantarctic" hreflang="en"&gt;Polar (Artic/Antarctic)&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-latency-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;0 Hours &amp;lt;= 24 Hours (NRT)&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-latency-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;about 12 to 24 h&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-resolution-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;100m &amp;lt; 2km&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-resolution-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Nominal 750 m&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/noaa" hreflang="en"&gt;NOAA&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;OSPO&lt;/div&gt;
          &lt;div class="field__item"&gt;STAR&lt;/div&gt;
          &lt;div class="field__item"&gt;CoastWatch&lt;/div&gt;
          &lt;div class="field__item"&gt;Cryosphere Team&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;CoastWatch Near Real-Time Search Tool&lt;/p&gt;

&lt;p&gt;S-NPP&amp;nbsp;&amp;amp; NOAA-20:&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/NearRealTimeSearch.html?region=ALL&amp;amp;product=IceThicknessNOAA&amp;amp;sensor=ALL&amp;amp;daysback=1&amp;amp;desc=sat"&gt;Ice Thickness&lt;/a&gt;&lt;/li&gt;
	&lt;li&gt;&lt;a href="http://coastwatch.noaa.gov/cw_html/NearRealTimeSearch.html?region=ALL&amp;amp;product=IceSrfTempNOAA&amp;amp;sensor=ALL&amp;amp;daysback=1&amp;amp;desc=sat"&gt;Ice Surface Temperature&lt;/a&gt;&lt;/li&gt;
	&lt;li&gt;&lt;a href="http://coastwatch.noaa.gov/cw_html/NearRealTimeSearch.html?region=ALL&amp;amp;product=IceConcNOAA&amp;amp;sensor=ALL&amp;amp;daysback=1&amp;amp;desc=sat"&gt;Ice Concentration&lt;/a&gt;&lt;/li&gt;
&lt;/ul&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-sample-filenames field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Sample Filenames&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;VXSCCW_B2019203_C244_011341-233757_NP06_edgemask_IceConc.nc&lt;br&gt;
VXSCCW_B2019203_C103_011341-232508_UZ00_edgemask_IceConc.nc&lt;br&gt;
VXSACW_B2019203_C246_002354-224644_SP06_edgemask_IceThickness.nc&lt;br&gt;
VXSCCW_B2019203_C102_003351-224644_VW00_edgemask_IceSrfTemp.nc&lt;br&gt;
VXSCCW is&lt;br&gt;
B2019201 is Year and day of year as BYYYYdoy&lt;br&gt;
C### is number of granules in composite&lt;br&gt;
Series of 6-digit numbers are the range of granule start times included in composite&lt;br&gt;
UZ00, for example, is sector indicator (see Description tab for sector map) for equatorial projection&lt;br&gt;
NP06 or SP06 is indicator for polar stereographic projection from the 6 sectors regions (North or South)&lt;br&gt;
edgemask&lt;br&gt;
Product DescriptionIceConc = Ice Concentration&lt;br&gt;
IceThickness = Ice Thickness&lt;br&gt;
IceSrfTemp = Ice Surface Temperature&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-metadata- field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;North Polar (&lt;strong&gt;NP06&lt;/strong&gt;) and South Polar (&lt;strong&gt;SP06&lt;/strong&gt;) are&amp;nbsp;&lt;strong&gt;Polar Stereographic projected&lt;/strong&gt;&amp;nbsp;daily composites&amp;nbsp;from the 6 CoastWatch VIIRS sectors&lt;/p&gt;

&lt;p&gt;UZ, VZ, WZ, XZ, YZ, ZZ&amp;nbsp;&lt;strong&gt;Northern high latitude CoastWatch VIIRS sectors&lt;/strong&gt;&amp;nbsp;(see sector map below)&lt;/p&gt;

&lt;p&gt;UW, VW, WU, XW, YW, ZW&amp;nbsp;&lt;strong&gt;Southern high latitude CoastWatch VIIRS sectors&amp;nbsp;&lt;/strong&gt;(see sector map below)&lt;/p&gt;

&lt;p&gt;&lt;img alt="CoastWatch Regional Sectors" data-entity-type="file" data-entity-uuid="9313b47f-2a1d-4902-9072-5bc9a7e60edd" height="345" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/inline-images/Figure02_0.png" width="659" loading="lazy"&gt;&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="clearfix text-formatted field field--name-field-product-thredds-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;THREDDS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Aggregated and Per-File View&lt;/strong&gt;&lt;/p&gt;

&lt;p&gt;Ice Thickness:&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;S-NPP:
	&lt;ul&gt;
		&lt;li&gt;Daily merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_thick_daily.html"&gt;https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_thick_daily.html&lt;/a&gt;&lt;/li&gt;
		&lt;li&gt;Daily 4-day rolling merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_thick_4day.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_thick_4day.html&lt;/a&gt;&lt;/li&gt;
	&lt;/ul&gt;
	&lt;/li&gt;
	&lt;li&gt;NOAA-20:
	&lt;ul&gt;
		&lt;li&gt;Daily merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_thick_daily.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_thick_daily.html&lt;/a&gt;&lt;/li&gt;
		&lt;li&gt;Daily 4-day rolling merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_thick_4day.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_thick_4day.html&lt;/a&gt;&lt;/li&gt;
	&lt;/ul&gt;
	&lt;/li&gt;
&lt;/ul&gt;

&lt;p&gt;Ice Surface Temperature:&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;S-NPP:
	&lt;ul&gt;
		&lt;li&gt;Daily merge:&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_temp_daily.html"&gt;https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_temp_daily.html&lt;/a&gt;&lt;/li&gt;
		&lt;li&gt;Daily 4-day rolling merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_temp_4day.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_temp_4day.html&lt;/a&gt;&lt;/li&gt;
	&lt;/ul&gt;
	&lt;/li&gt;
	&lt;li&gt;NOAA-20:
	&lt;ul&gt;
		&lt;li&gt;Daily merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_temp_daily.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_temp_daily.html&lt;/a&gt;&lt;/li&gt;
		&lt;li&gt;Daily 4-day rolling merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_temp_4day.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_temp_4day.html&lt;/a&gt;&lt;/li&gt;
	&lt;/ul&gt;
	&lt;/li&gt;
&lt;/ul&gt;

&lt;p&gt;Ice Concentration:&lt;/p&gt;

&lt;ul&gt;
	&lt;li&gt;S-NPP:
	&lt;ul&gt;
		&lt;li&gt;Daily merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_conc_daily.html"&gt;https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_conc_daily.html&lt;/a&gt;&lt;/li&gt;
		&lt;li&gt;Daily 4-day rolling merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_conc_4day.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_npp_ice_conc_4day.html&lt;/a&gt;&lt;/li&gt;
	&lt;/ul&gt;
	&lt;/li&gt;
	&lt;li&gt;NOAA-20:
	&lt;ul&gt;
		&lt;li&gt;Daily merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_conc_daily.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_conc_daily.html&lt;/a&gt;&lt;/li&gt;
		&lt;li&gt;Daily 4-day rolling merge:&amp;nbsp;&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_conc_4day.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_n20_ice_conc_4day.html&lt;/a&gt;&lt;/li&gt;
	&lt;/ul&gt;
	&lt;/li&gt;
&lt;/ul&gt;

&lt;p&gt;&amp;nbsp;&lt;/p&gt;

&lt;p&gt;&lt;strong&gt;Top Level Sea Ice Catalog&lt;/strong&gt;&lt;/p&gt;

&lt;p&gt;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_coastwatch_ice.html"&gt;https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_coastwatch_ice.html&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-erddap-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;ERDDAP&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;S-NPP:&amp;nbsp;&amp;nbsp;&lt;/p&gt;

&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=nppice"&gt;https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=nppice&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;NOAA-20:&amp;nbsp;&lt;/p&gt;

&lt;p&gt;** Not yet available **&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Thu, 17 Mar 2022 14:32:41 +0000</pubDate>
    <dc:creator>jebidiah.jeffery</dc:creator>
    <guid isPermaLink="false">74 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>
<item>
  <title>NOAA MSL12 Ocean Color, science quality, VIIRS multi-sensor (SNPP + NOAA-20), chlorophyll DINEOF gap-filled analysis</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/noaa-msl12-ocean-color-science-quality-viirs-multi-sensor-snpp-noaa-20-chlorophyll-dineof</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;NOAA MSL12 Ocean Color, science quality, VIIRS multi-sensor (SNPP + NOAA-20), chlorophyll DINEOF gap-filled analysis&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;VIIRS Ocean Color multi-sensor gap-filled analysis (Level 4) is produced with input from the VIIRS multi-sensor (SNPP + NOAA-20) daily merged chlorophyll and monthly climatology using the DINEOF method of interpolation for gap-filling.&amp;nbsp; The chlorophyll algorithm used is OCI.&amp;nbsp; The NOAA ocean color science team provides the gap-filled data file to NOAA CoastWatch.&amp;nbsp; CoastWatch converts these to the NetCDF product and serves them.&lt;/p&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;jebidiah.jeffery&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2022-03-17T10:31:32-04:00" title="Thursday, March 17, 2022 - 10:31" class="datetime"&gt;Thu, 03/17/2022 - 10:31&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2022-05/V2020006_A1_WW00_chlora_800_0.png?itok=86yr5OJw" width="650" height="278" alt="Global Map projection displaying chlorophyll-a concentration" class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
            &lt;div class="clearfix text-formatted field field--name-field-product-description field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;Ocean Color Level 4 VIIRS multi-sensor (SNPP + NOAA-20), daily, global, gap-filled analysis chlorophyll-a is produced through NOAA Multi-Sensor Level 1 to Level 2 processing system (MSL12).&amp;nbsp; A 6-month animation of the Level-4 analysis can be seen&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/sod/mecb/color/validation/dineof-chl-movie.gif"&gt;here&lt;/a&gt;.&lt;/p&gt;

&lt;p&gt;Ocean Color satellite sensors measure visible light at specific wavelengths which leaves the surface of the ocean and arrives at the top of the atmosphere where the sensor is located. From these visible spectral measurements, along with simultaneous measurements in the near infrared (NIR) and the short wave infrared (SWIR) wavelengths, the color of the ocean, or normalized water leaving radiances (&lt;em&gt;nL&lt;sub&gt;w&lt;/sub&gt;&lt;/em&gt;), can be calculated. Then, the&amp;nbsp;&lt;em&gt;nL&lt;sub&gt;w&lt;/sub&gt;&lt;/em&gt;s are used to derive other ocean properties such as the concentration of chlorophyll-&lt;em&gt;a&lt;/em&gt;&amp;nbsp;(chlor-a or sometimes chl, which is the green pigment responsible for photosynthesis and therefore an indicator of the amount of phytoplankton biomass in the ocean water) and the coefficient of extinction for downwelling irradiance (&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;&lt;em&gt;&lt;sub&gt;(&lt;/sub&gt;&lt;/em&gt;&lt;em&gt;&lt;sub&gt;PAR)&lt;/sub&gt;&lt;/em&gt;&amp;nbsp;and&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;&lt;em&gt;&lt;sub&gt;(490)&lt;/sub&gt;&lt;/em&gt;&amp;nbsp;which are related to water clarity).&lt;/p&gt;

&lt;p&gt;The ocean color datasets described here are from the&amp;nbsp;&lt;a href="http://www.jpss.noaa.gov/viirs.html"&gt;Visible and Infrared Imaging Radiometer Suite (VIIRS) sensor&amp;nbsp;&lt;/a&gt;aboard the Suomi-NPP satellite (SNPP) which was launched in November 2011 and also aboard the NOAA-20 satellite launched in November 2017.&amp;nbsp;&amp;nbsp;NOAA ocean color data are processed using NOAA Multi-Sensor Level 1 to Level 2 processing system (MSL12) developed by the NOAA/STAR Ocean Color Team [&lt;a href="http://doi.org/10.1002/jgrd.50793"&gt;&lt;em&gt;Wang et al.&lt;/em&gt;&lt;/a&gt;&lt;a href="http://doi.org/10.1002/jgrd.50793"&gt;, 2013&lt;/a&gt;].&amp;nbsp; Both near real-time and delayed (2 weeks), science quality products are available.&lt;/p&gt;

&lt;p&gt;An excerpt from the&amp;nbsp;&lt;em&gt;EOS&lt;/em&gt;&amp;nbsp;article by&amp;nbsp;&lt;a href="https://dx.doi.org/10.1029/2019EO136548"&gt;Mikelsons et al., 2019&lt;/a&gt;&amp;nbsp;explains the approach to the&lt;a href="https://coastwatch.noaa.gov/cw/satellite-data-products/ocean-color/near-real-time/viirs-multi-sensor-daily-merge.html"&gt;&amp;nbsp;Level-3, multi-sensor merged, global, daily data product served&amp;nbsp; by&amp;nbsp;CoastWatch&lt;/a&gt;&amp;nbsp;at ~4 km spatial resolution in NetCDF format.&amp;nbsp; "SNPP and NOAA-20 operate along the same Sun-synchronous polar orbit that crosses the equator at about 13:30 local time—both satellites travel around Earth from pole to pole in such a way that they observe the same areas at about the same time of day, no matter the season. There is about a 50-minute delay between the paths of NOAA-20 and SNPP, so NOAA-20’s path runs between two adjacent SNPP orbital paths and vice versa. Thus, the overlap of the spatial coverages in the two VIIRS sensors automatically fills each instrument’s data gaps [&lt;a href="http://doi.org/10.1364/OE.27.00A445"&gt;&lt;em&gt;Mikelsons and Wang&lt;/em&gt;, 2019&lt;/a&gt;]. In addition, ocean color data from the VIIRS SNPP and NOAA-20 have the same spatial and temporal resolution, and these data are processed using the same algorithm and software package (i.e., MSL12). Therefore, the statistics of their ocean color products are very similar, and the data can be merged into a global 9-kilometer resolution data set directly without adjustment [&lt;a href="http://doi.org/10.3390/rs11020178"&gt;&lt;em&gt;Liu and Wang&lt;/em&gt;, 2019&lt;/a&gt;]."&amp;nbsp;These&amp;nbsp;multi-sensor daily merged&amp;nbsp;products are derived from MSL12 v1.3 for both SNPP plus NOAA-20.&lt;/p&gt;

&lt;p&gt;The EOS article&amp;nbsp;goes on to explain the approach to the Level-4, multi-sensor, gap-filled analysis [&lt;em&gt;&lt;a href="https://dx.doi.org/10.1029/2019EO136548"&gt;Mikelsons et al., 2019&lt;/a&gt;&lt;/em&gt;].&amp;nbsp; "Even after the datasets from the two satellites are merged, some gaps remain. To complete the picture, the gap-filling application uses a mathematical technique based on the data interpolating empirical orthogonal function (DINEOF) [&lt;a href="http://doi.org/10.1016/j.ocemod.2004.08.001"&gt;&lt;em&gt;Alvera-Azcarate et al.&lt;/em&gt;,&lt;em&gt;&amp;nbsp;2005&lt;/em&gt;&lt;/a&gt;;&amp;nbsp;&lt;em&gt;&lt;a href="http://doi.org/10.1175/1520-0426(2003)020%3c1839:ECADFF%3e2.0.CO;2"&gt;Beckers and Rixen, 2003&lt;/a&gt;&lt;/em&gt;]. This technique exploits the coherency over location and time of the data from the two satellites to infer a value at the missing location."&amp;nbsp; CoastWatch serves this daily global gap-filled product at ~9 km spatial resolution in NetCDF.&amp;nbsp; Go to the data access tab on this page for access.&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Daily, with 2-week delay&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Ocean Color&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-documentation field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;Liu, X.&amp;nbsp;and&amp;nbsp;M. Wang, "Filling the gaps in ocean maps",&amp;nbsp;&lt;em&gt;EOS&lt;/em&gt;,&amp;nbsp;&lt;strong&gt;100&lt;/strong&gt;&amp;nbsp;(2019).&amp;nbsp;&lt;a href="https://dx.doi.org/10.1029/2019EO136548"&gt;doi:10.1029/2019EO136548&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;Liu, X., and M. Wang (2019), Filling the gaps of missing data in the merged VIIRS SNPP/NOAA-20 ocean color product using the DINEOF method,&amp;nbsp;&lt;em&gt;Remote Sens.&lt;/em&gt;,&amp;nbsp;&lt;em&gt;11&lt;/em&gt;, 178,&amp;nbsp;&lt;a href="https://doi.org/10.3390/rs11020178"&gt;https://doi.org/10.3390/rs11020178&lt;/a&gt;.&lt;/p&gt;

&lt;p&gt;Mikelsons, K., and M. Wang (2019), Optimal satellite orbit configuration for global ocean color product coverage,&amp;nbsp;&lt;em&gt;Opt. Express&lt;/em&gt;,&amp;nbsp;&lt;em&gt;27&lt;/em&gt;, A445–A457,&amp;nbsp;&lt;a href="https://doi.org/10.1364/OE.27.00A445"&gt;https://doi.org/10.1364/OE.27.00A445&lt;/a&gt;.&lt;/p&gt;

&lt;p&gt;Mikelsons, K., and M. Wang (2018), Interactive online maps make satellite ocean data accessible,&amp;nbsp;&lt;em&gt;Eos Trans. AGU&lt;/em&gt;,&amp;nbsp;&lt;em&gt;99&lt;/em&gt;,&amp;nbsp;&lt;a href="https://doi.org/10.1029/2018EO096563"&gt;https://doi.org/10.1029/2018EO096563&lt;/a&gt;.&lt;/p&gt;

&lt;p&gt;Liu, X.&amp;nbsp;and&amp;nbsp;M. Wang, "Gap filling of missing data for VIIRS global ocean color product using the DINEOF method",&amp;nbsp;&lt;em&gt;IEEE Trans. Geosci. Remote Sens.&lt;/em&gt;,&amp;nbsp;&lt;strong&gt;56&lt;/strong&gt;, 4464-4476 (2018).&amp;nbsp;&lt;a href="https://dx.doi.org/10.1109/TGRS.2018.2820423"&gt;doi:10.1109/TGRS.2018.2820423&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;Wang, M.&amp;nbsp;and&amp;nbsp;S. Son, "VIIRS-derived chlorophyll-a using the ocean color index method",&amp;nbsp;&lt;em&gt;Remote Sens. Environ.&lt;/em&gt;,&amp;nbsp;&lt;strong&gt;182&lt;/strong&gt;, 141-149 (2016).&amp;nbsp;&lt;a href="https://dx.doi.org/10.1016/j.rse.2016.05.001"&gt;doi:10.1016/j.rse.2016.05.001&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;Wang, M., et al. (2013), Impact of VIIRS SDR performance on ocean color products,&amp;nbsp;&lt;em&gt;J. Geophys. Res. Atmos.&lt;/em&gt;,&amp;nbsp;&lt;em&gt;118&lt;/em&gt;, 10,347–10,360,&amp;nbsp;&lt;a href="https://doi.org/10.1002/jgrd.50793"&gt;https://doi.org/10.1002/jgrd.50793&lt;/a&gt;.&lt;/p&gt;

&lt;p&gt;C.&amp;nbsp;Hu,&amp;nbsp;Z.&amp;nbsp;Lee,&amp;nbsp;B.A.&amp;nbsp;Franz, (2012) "Chlorophyll a algorithms for oligotrophic oceans: A novel approach based on three-band reflectance difference"&amp;nbsp;Journal of Geophysical Research,&amp;nbsp;117&amp;nbsp;(2012) (C01011,&lt;a href="https://doi.org/10.1029/2011JC007395"&gt;&amp;nbsp;doi: 01010.01029/02011JC007395&lt;/a&gt;&lt;/p&gt;

&lt;p&gt;Alvera-Azcarate, A., et al. (2005), Reconstruction of incomplete oceanographic data sets using empirical orthogonal functions: Application to the Adriatic Sea,&amp;nbsp;&lt;em&gt;Ocean Model.&lt;/em&gt;,&amp;nbsp;&lt;em&gt;9&lt;/em&gt;, 325–346,&amp;nbsp;&lt;a href="https://doi.org/10.1016/j.ocemod.2004.08.001"&gt;https://doi.org/10.1016/j.ocemod.2004.08.001&lt;/a&gt;.&lt;/p&gt;

&lt;p&gt;Beckers, J., and M. Rixen (2003), EOF calculations and data filling from incomplete oceanographic data sets,&amp;nbsp;&lt;em&gt;J. Atmos. Oceanic Technol.&lt;/em&gt;,&amp;nbsp;&lt;em&gt;20&lt;/em&gt;, 1,839–1,856,&amp;nbsp;&lt;a href="https://doi.org/10.1175/1520-0426(2003)020%3C1839:ECADFF%3E2.0.CO;2"&gt;https://doi.org/10.1175/1520-0426(2003)020&amp;lt;1839:ECADFF&amp;gt;2.0.CO;2&lt;/a&gt;.&lt;/p&gt;

&lt;p&gt;Algorithm Theoretical Basis Document (ATBD)&lt;/p&gt;

&lt;p&gt;Wang, M.,&amp;nbsp;X. Liu,&amp;nbsp;L. Jiang&amp;nbsp;and&amp;nbsp;S. Son,&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/sod/mecb/color/documents/ATBD_VIIRS_OC_v1.0_June2017_f2.pdf"&gt;"The VIIRS Ocean Color Products"&lt;/a&gt;,&amp;nbsp;&lt;em&gt;Algorithm Theoretical Basis Document Version 1.0&lt;/em&gt;, 68 pp., June 2017.&lt;/p&gt;

&lt;p&gt;&lt;em&gt;For more MSL12 processing documentation, please&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/cw/satellite-data-products/ocean-color/near-real-time/viirs-single-sensor.html"&gt;go to documentation tab here&lt;/a&gt;&lt;/em&gt;.&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Chlorophyll-a Concentration&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 4&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/global" hreflang="en"&gt;Global&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-latency-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;24+ hours (Delayed)&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-latency-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Daily, with 2-week delay&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-resolution-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;2km+&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-resolution-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;9 km&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/noaa" hreflang="en"&gt;NOAA&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-algorit field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Algorithms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/processing-algorithms/msl12" hreflang="en"&gt;MSL12&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;STAR&lt;/div&gt;
          &lt;div class="field__item"&gt;CoastWatch&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?date=20200429&amp;amp;layer0=chldineofsciVIIRSd"&gt;CoastWatch Data Portal&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-https-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;HTTPS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/chlora/dineof/"&gt;https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/chlora/dineof/&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-thredds-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;THREDDS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_dineof_sci_global_chlora_daily.html"&gt;https://coastwatch.noaa.gov/thredds/socd/coastwatch/catalog_viirs_dineof_sci_global_chlora_daily.html&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-erddap-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;ERDDAP&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=DINEOF+%22Science+Quality%22"&gt;https://coastwatch.noaa.gov/erddap/search/index.html?page=1&amp;amp;itemsPerPage=1000&amp;amp;searchFor=DINEOF+%22Science+Quality%22&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Thu, 17 Mar 2022 14:31:32 +0000</pubDate>
    <dc:creator>jebidiah.jeffery</dc:creator>
    <guid isPermaLink="false">72 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>
<item>
  <title>NOAA MSL12 Ocean Color - Science Quality - VIIRS SNPP</title>
  <link>https://cwdrupal11.star1.nesdis.noaa.gov/products/noaa-msl12-ocean-color-science-quality-viirs-snpp</link>
  <description>&lt;span class="field field--name-title field--type-string field--label-hidden"&gt;NOAA MSL12 Ocean Color - Science Quality - VIIRS SNPP&lt;/span&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-summary field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;VIIRS Science Quality Ocean Color Level 2 (EDR) is produced by NOAA/STAR Ocean Color Team through NOAA Multi-Sensor Level 1 to Level 2 processing system (MSL12) using an improved calibration for the satellite data record (OC-SDR, which is Level 1b). &amp;nbsp;CoastWatch Level-3 composites, binned and mapped data products also available.&lt;/p&gt;&lt;/div&gt;
      &lt;span class="field field--name-uid field--type-entity-reference field--label-hidden"&gt;&lt;span&gt;jebidiah.jeffery&lt;/span&gt;&lt;/span&gt;
&lt;span class="field field--name-created field--type-created field--label-hidden"&gt;&lt;time datetime="2022-03-17T10:30:02-04:00" title="Thursday, March 17, 2022 - 10:30" class="datetime"&gt;Thu, 03/17/2022 - 10:30&lt;/time&gt;
&lt;/span&gt;

            &lt;div class="field field--name-field-product-image field--type-image field--label-hidden field__item"&gt;  &lt;img loading="lazy" src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/styles/max_650x650/public/2022-05/VRSVCW_B2018271_B2018271_F1_WW00_edgemask_chlora_800.png?itok=Emvi8nF_" width="650" height="271" alt="Global Map projection displaying chlorophyll-a concentration" class="img-fluid image-style-max-650x650"&gt;


&lt;/div&gt;
      
            &lt;div class="clearfix text-formatted field field--name-field-product-description field--type-text-long field--label-hidden field__item"&gt;&lt;p&gt;The current VIIRS SNPP science quality collection, released in CoastWatch as of 07 August 2017, is produced from MSL12 v1.2* using OC-SDR v04.&amp;nbsp; VIIRS NOAA-20 Science Quality is currently in development.&amp;nbsp;&amp;nbsp;NOAA-20 Near real-time&amp;nbsp;is already available.&lt;/p&gt;&lt;p&gt;Ocean Color satellite sensors measure visible light at specific wavelengths which leaves the surface of the ocean and arrives at the top of the atmosphere where the sensor is located.&amp;nbsp;&lt;em&gt;nL&lt;sub&gt;w&lt;/sub&gt;&lt;/em&gt;, can be calculated.&amp;nbsp;&lt;em&gt;nL&lt;sub&gt;w&lt;/sub&gt;&lt;/em&gt;s are used to derive other ocean properties such as the concentration of chlorophyll-&lt;em&gt;a&lt;/em&gt;&amp;nbsp;(chlor-a, chlora, or sometimes chl , which is the green pigment responsible for photosynthesis and therefore and indicator of the amount of phytoplankton biomass in the ocean water) and the coefficients for attenuation of downwelling irradiance (&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(PAR) and&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490) which are related to water clarity).&lt;/p&gt;&lt;p&gt;The ocean color datasets described here are from the&amp;nbsp;&lt;a href="http://www.jpss.noaa.gov/viirs.html"&gt;Visible Infrared Imaging Radiometer Suite (VIIRS) sensor aboard the Suomi-NPP satellite (SNPP)&lt;/a&gt;&amp;nbsp;which was launched in November 2011 and aboard the NOAA-20 which was launched in November&amp;nbsp;2017.&amp;nbsp; The&amp;nbsp;ocean color science quality collection differ in several ways from the near real-time products (Table 1).&lt;/p&gt;&lt;p&gt;*Note that the metadata in the NetCDF files show v1.20 from the beginning of the collection (2 Jan. 2012) up tthrough 24 April 2017 and v1.21 from 25 April 2017 forward. This version change did not affect retrieval values for the standard products served by CoastWatch.&lt;/p&gt;&lt;p&gt;Table 1. Comparison of primary processing differences for VIIRS SNPP near real time versus science quality ocean color data.&lt;/p&gt;&lt;table&gt;&lt;thead&gt;&lt;tr&gt;&lt;th&gt;Parameter&lt;/th&gt;&lt;th&gt;Near real-time&lt;/th&gt;&lt;th&gt;Science Quality&lt;/th&gt;&lt;/tr&gt;&lt;/thead&gt;&lt;tbody&gt;&lt;tr&gt;&lt;td&gt;Latency&lt;/td&gt;&lt;td&gt;~12 hours (best effort)&lt;/td&gt;&lt;td&gt;Delayed 15 days&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;Sensor Data Record (SDR)&lt;/td&gt;&lt;td&gt;IDPS Operational SDR&lt;/td&gt;&lt;td&gt;SDR produced by the NOAA/STAR ocean color team&amp;nbsp;&amp;nbsp;&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;Ancillary Data&lt;/td&gt;&lt;td&gt;Predicted&lt;/td&gt;&lt;td&gt;Assimilated&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;Spatial Coverage&lt;/td&gt;&lt;td&gt;May have gaps&lt;/td&gt;&lt;td&gt;As complete as possible&lt;/td&gt;&lt;/tr&gt;&lt;/tbody&gt;&lt;/table&gt;&lt;p&gt;Standard VIIRS SNPP ocean color data Level 2 products from MSL12 v1.2(both near real-time and science quality) include:&lt;/p&gt;&lt;ul&gt;&lt;li&gt;Normalized water-leaving (nL&lt;sub&gt;w&lt;/sub&gt;) radiance at 6 visible bands (nominal center wavelengths)&lt;ul&gt;&lt;li&gt;M1 (410nm)&lt;/li&gt;&lt;li&gt;M2 (443nm)&lt;/li&gt;&lt;li&gt;M3 (486nm)&lt;/li&gt;&lt;li&gt;M4 (551nm)&lt;/li&gt;&lt;li&gt;M5 (671nm)&lt;/li&gt;&lt;li&gt;I1 (638 nm)&lt;/li&gt;&lt;/ul&gt;&lt;/li&gt;&lt;li&gt;Chlorophyll-&lt;em&gt;a&lt;/em&gt;&amp;nbsp;concentration&lt;/li&gt;&lt;li&gt;Diffuse attenuation coefficient at 490 nm (&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490)), and&lt;/li&gt;&lt;li&gt;Diffuse attenuation coefficient of photosynthetically active radiation (&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(PAR))&lt;/li&gt;&lt;li&gt;QA Score (a quantitative assessment of VIIRS ocean color performance with respect to an empirical catalog of in situ spectra, Wei et al., 2016; see reference tab)&lt;/li&gt;&lt;/ul&gt;&lt;p&gt;See Table 2 for quick reference matrix of additional science quality VIIRS ocean color products. The&amp;nbsp;&lt;a href="https://coastwatch.noaa.gov/cw_html/cw_granule_selector.html"&gt;Ocean Color Granule Selector&lt;/a&gt;&amp;nbsp;is a tool to interactively preview, choose and download L2 granule files. Data files are in NetCDF4/CF but differ from past NOAA CoastWatch products in their use of&amp;nbsp;hierarchical groups to store attributes, variables, and dimensions. CoastWatch Utilities Software has been updated to work with these files. Additional metadata can be obtained using THREDDS services such as ISO or OPeNDAP.&lt;/p&gt;&lt;p&gt;Table 2. Quick reference matrix of science quality VIIRS ocean color products available from CoastWatch.&lt;/p&gt;&lt;table&gt;&lt;caption&gt;&amp;nbsp;&lt;/caption&gt;&lt;thead&gt;&lt;tr&gt;&lt;th&gt;Product Description&lt;/th&gt;&lt;th&gt;Processing Level&lt;/th&gt;&lt;th&gt;Nominal Spatial Resolution&lt;/th&gt;&lt;th&gt;Chl-&lt;em&gt;a&lt;/em&gt;&lt;/th&gt;&lt;th&gt;&lt;em&gt;nLws&lt;/em&gt;&lt;/th&gt;&lt;th&gt;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(PAR)&lt;/th&gt;&lt;th&gt;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490)&lt;/th&gt;&lt;th&gt;QA Score&lt;/th&gt;&lt;/tr&gt;&lt;/thead&gt;&lt;tbody&gt;&lt;tr&gt;&lt;td&gt;Daily granule @750 m&lt;/td&gt;&lt;td&gt;L2&lt;/td&gt;&lt;td&gt;750 m&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;Daily merged global sectorized *&lt;/td&gt;&lt;td&gt;L3&lt;/td&gt;&lt;td&gt;750 m&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;not currently available&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;7-day merged global sectorized *&lt;/td&gt;&lt;td&gt;L3&lt;/td&gt;&lt;td&gt;750 m&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;not currently available&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;True monthly merged global sectorized *&lt;/td&gt;&lt;td&gt;L3&lt;/td&gt;&lt;td&gt;750 m&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;not currently available&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;Daily merged global single file&lt;/td&gt;&lt;td&gt;L3&lt;/td&gt;&lt;td&gt;4 km&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;7-day merged global single file&lt;/td&gt;&lt;td&gt;L3&lt;/td&gt;&lt;td&gt;4 km&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;Monthly merged global single file&lt;/td&gt;&lt;td&gt;L3&lt;/td&gt;&lt;td&gt;4 km&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;td&gt;X&lt;/td&gt;&lt;/tr&gt;&lt;/tbody&gt;&lt;/table&gt;&lt;p&gt;*See&amp;nbsp;Figure 1&amp;nbsp;for description and identification of sectors.&lt;/p&gt;&lt;h3&gt;Level-2 science quality ocean color products are organized by Year and Day-of-the-Year. Filenames will appear as follows: V2017187003435_NPP_SCINIR_L2.nc where:&lt;/h3&gt;&lt;table&gt;&lt;tbody&gt;&lt;tr&gt;&lt;td&gt;V:&lt;/td&gt;&lt;td&gt;Sensor VIIRS&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;2017:&lt;/td&gt;&lt;td&gt;Year of observation (YYYY)&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;187:&lt;/td&gt;&lt;td&gt;Day of year for the observation (DDD)&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;003435:&lt;/td&gt;&lt;td&gt;Hour, minutes, and seconds of the start of observation (hhmmss) in UTC&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;NPP:&lt;/td&gt;&lt;td&gt;Spacecraft S-NPP&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;SCINIR:&lt;/td&gt;&lt;td&gt;Sensor data record source and environmental data record algorithm.&lt;br&gt;Indicates the standard Science Quality output for distribution&lt;/td&gt;&lt;/tr&gt;&lt;tr&gt;&lt;td&gt;L2:&lt;/td&gt;&lt;td&gt;Processing level. L2 includes calibrated and geolocated geophysical products&lt;/td&gt;&lt;/tr&gt;&lt;/tbody&gt;&lt;/table&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;&lt;p&gt;Figure 1. Twenty-four sectors identified for file naming convention. Sectors enable downloads of select subset regions from global high resolution VIIRS ocean color science quality data.&lt;/p&gt;&lt;p&gt;&lt;img src="https://cwdrupal11.star1.nesdis.noaa.gov/sites/default/files/inline-images/VIIRS_sectorMap_2.jpg" data-entity-uuid="de27e3ac-62e5-4ec1-846b-8b930b92c690" data-entity-type="file" alt="Map of CoastWatch VIIRS Sectors for the entire globe" width="698" height="403" loading="lazy"&gt;&lt;/p&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-start-date field--type-datetime field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Start Date&lt;/div&gt;
              &lt;div class="field__item"&gt;January 2, 2011&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-temporal-coverage- field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Temporal Coverage&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;SNPP: 02 January 2011 through 15 days before present (15 day delay on Science Quality)&lt;br&gt;NOAA-20: TBD - coming soon&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-type field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Product Families&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Ocean Color&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

            &lt;div class="clearfix text-formatted field field--name-field-product-documentation field--type-text-long field--label-hidden field__item"&gt;&lt;ul&gt;&lt;li&gt;&lt;p&gt;Algorithm Theoretical Basis Document (ATBD): Wang, M., X. Liu, L. Jiang and S. Son, "The VIIRS Ocean Color Products",&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/sod/mecb/color/documents/ATBD_VIIRS_OC_v1.0_June2017_f2.pdf"&gt;Algorithm Theoretical Basis Document Version 1.0&lt;/a&gt;, 68 pp., June 2017.&lt;/p&gt;&lt;hr&gt;&lt;/li&gt;&lt;li&gt;Sun, J., X. Xiong, E. Waluschka, and M. Wang, 2016, "Suomi National Polar- Orbiting Partnership Visible Infrared Imaging Radiometer Suite polarization sensitivity analysis",&amp;nbsp;&lt;em&gt;Appl. Opt.&lt;/em&gt;, 55, 7645-7658 (2016).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/AO.55.007645"&gt;doi:10.1364/AO.55.007645&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Wang, M. and S. Son, 2016, "VIIRS -derived chlorophyll-a using the ocean color index method",&amp;nbsp;&lt;em&gt;Remote Sens. Environ .,&lt;/em&gt;&amp;nbsp;182, 141-149 (2016).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1016/j.rse.2016.05.001"&gt;doi:10.1016/j.rse.2016.05.001&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Sun, J. and M. Wang, 2016, "VIIRS reflective solar bands calibration progress and its impact on ocean color products",&amp;nbsp;&lt;em&gt;Remote Sens.&lt;/em&gt;, 8, 194 (2016).&amp;nbsp;&lt;a href="http://dx.doi.org/10.3390/rs8030194"&gt;doi:10.3390/rs8030194&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Sun, J., M. Chu, and M. Wang, 2016, "Degradation nonuniformity in the solar diffuser bidiretional reflectance distribution function",&amp;nbsp;&lt;em&gt;Appl. Opt .,&lt;/em&gt;&amp;nbsp;55, 6001-6016 (2016).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/AO.55.006001"&gt;doi:10.1364/AO.55.006001&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Wang, M., 2016, "Rayleigh radiance computations for satellite remote sensing: accounting for the effect of sensor spectral response function",&amp;nbsp;&lt;em&gt;Opt. Express&lt;/em&gt;, 24, 12414-12429 (2016).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/OE.24.012414"&gt;doi:10.1364/OE.24.012414&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Wang, M., P. Naik, and S. Son, 2016, "Out-of-band effects of satellite ocean color sensors",&amp;nbsp;&lt;em&gt;Appl. Opt .,&lt;/em&gt;&amp;nbsp;55, 2312-2323 (2016).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/AO.55.002312"&gt;doi:10.1364/AO.55.002312&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Wang, M., W. Shi, L. Jiang, and K. Voss, 2016, "NIR- and SWIR-based on-orbit vicarious calibrations for satellite ocean color sensors",&amp;nbsp;&lt;em&gt;Opt. Express, 24, 20437-20453 (2016).&lt;/em&gt;&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/OE.24.020437"&gt;doi:10.1364/OE.24.020437&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Sun, J. and M. Wang, 2015, "On-orbit calibration of Visible Infrared Imaging Radiometer Suite reflective solar bands and its challenges using a solar diffuser",&amp;nbsp;&lt;em&gt;Appl. Opt .,&lt;/em&gt;&amp;nbsp;54, 7210-7223 (2015).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/AO.54.007210"&gt;doi:10.1364/AO.54.007210&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Sun, J. and M. Wang, 2015, "On-orbit characterization of the VIIRS solar diffuser and solar diffuser screen",&amp;nbsp;&lt;em&gt;Appl. Opt .,&lt;/em&gt;&amp;nbsp;54, 236-252 (2015).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/AO.54.000236"&gt;doi:10.1364/AO.54.000236&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Sun, J. and M. Wang, 2015, "Radiometric calibration of the Visible Infrared Imaging Radiometer Suite reflective solar bands with robust characterizations and hybrid calibration coefficients",&amp;nbsp;&lt;em&gt;Appl. Opt .,&lt;/em&gt;&amp;nbsp;54, 9331-9342 (2015).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/AO.54.009331"&gt;doi:10.1364/AO.54.009331&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Son, S. and M. Wang, 2015, "Diffuse attenuation coefficient of the photosynthetically available radiation&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(PAR) for global open ocean and coastal waters",&amp;nbsp;&lt;em&gt;Remote Sens. Environ.&lt;/em&gt;, 159, 250-258 (2015).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1016/j.rse.2014.12.011"&gt;doi:10.1016/j.rse.2014.12.011&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Wang, M., W. Shi, L. Jiang, X. Liu, S. Son, and K. Voss, 2015, "Technique for monitoring performance of VIIRS reflective solar bands for ocean color data processing",&amp;nbsp;&lt;em&gt;Opt. Express&lt;/em&gt;, 23, 14446-14460 (2015).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/OE.23.014446"&gt;doi:10.1364/OE.23.014446&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Xiong, X., J. Sun, J. Fulbright, Z. Wang, and J. Butler, 2015, "Lunar calibration and performance for S-NPP VIIRS reflective solar bands",&amp;nbsp;&lt;em&gt;IEEE Trans. Geosci&lt;/em&gt;&amp;nbsp;&lt;em&gt;.&lt;/em&gt;&amp;nbsp;&lt;em&gt;Remote Sens., 54, 1052-1061 (2015).&lt;/em&gt;&amp;nbsp;&lt;a href="http://dx.doi.org/10.1109/TGRS.2015.2473665"&gt;doi:10.1109/TGRS.2015.2473665&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Sun, J. and M. Wang, 2014, "Visible Infrared Imaging Radiometer Suite solar diffuser calibration and its challenges using solar diffuser stability monitor",&amp;nbsp;&lt;em&gt;Appl. Opt .,&lt;/em&gt;&amp;nbsp;53, 8571-8584 (2014).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/AO.53.008571"&gt;doi:10.1364/AO.53.008571&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Mikelsons, K., M. Wang, L. Jiang, and M. Bouali, 2014, "Destriping algorithm for improved satellite-derived ocean color product imagery",&amp;nbsp;&lt;em&gt;Opt&lt;/em&gt;&amp;nbsp;&lt;em&gt;. Express&lt;/em&gt;, 22, 28058-28070 (2014).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/OE.22.028058"&gt;doi:10.1364/OE.22.028058&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Sun, J., M. Wang, L. Tan, and L. Jiang, 2014, "An efficient approach for VIIRS RDR to SDR data processing",&amp;nbsp;&lt;em&gt;IEEE Geosci&lt;/em&gt;&amp;nbsp;&lt;em&gt;. Remote Sens. Lett&lt;/em&gt;&amp;nbsp;&lt;em&gt;.&lt;/em&gt;, 11, 2037-2041 (2014).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1109/LGRS.2014.2317553"&gt;doi:10.1109/LGRS.2014.2317553&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Jiang, L. and M. Wang, 2014, "Improved near-infrared ocean reflectance correction algorithm for satellite ocean color data processing",&amp;nbsp;&lt;em&gt;Opt. Express, 22, 21657-21678 (2014).&lt;/em&gt;&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/OE.22.021657"&gt;doi:10.1364/OE.22.021657&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Jiang, L. and M. Wang, 2013, "Identification of pixels with stray light and cloud shadow contaminations in the satellite ocean color data processing",&amp;nbsp;&lt;em&gt;Appl. Opt.&lt;/em&gt;, 52, 6757-6770 (2013).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1364/AO.52.006757"&gt;doi:10.1364/AO.52.006757&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Wang, M., X. Liu, L. Tan, L. Jiang, S. Son, W. Shi, K. Rausch, and K. Voss, 2013, "Impacts of VIIRS SDR performance on ocean color products",&amp;nbsp;&lt;em&gt;J. Geophys&lt;/em&gt;&amp;nbsp;&lt;em&gt;. Res. Atmos.&lt;/em&gt;, 118, 10347-10360 (2013).&amp;nbsp;&lt;a href="http://dx.doi.org/10.1002/jgrd.50793"&gt;doi:10.1002/jgrd.50793&lt;/a&gt;&lt;/li&gt;&lt;/ul&gt;&lt;/div&gt;
      
  &lt;div class="field field--name-field-product-measurements field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Measurements&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Chlorophyll-a Concentration&lt;/div&gt;
          &lt;div class="field__item"&gt;Diffuse Attenuation Coefficients&lt;/div&gt;
          &lt;div class="field__item"&gt;Normalized Water-Leaving Radiances&lt;/div&gt;
          &lt;div class="field__item"&gt;Ocean Color Quality Score&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-levels field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Levels&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;Level 2&lt;/div&gt;
          &lt;div class="field__item"&gt;Level 3&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-spatial-coverage field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Coverage&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/global" hreflang="en"&gt;Global&lt;/a&gt;&lt;/div&gt;
          &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/product-spatial-coverages/coastwatch-global-sectors" hreflang="en"&gt;CoastWatch Global Sectors&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-latency-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;0 Hours &amp;lt;= 24 Hours (NRT)&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-latency-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Latency Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;~12-24 h&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-resolution-groups field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Groups&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;100m &amp;lt; 2km&lt;/div&gt;
          &lt;div class="field__item"&gt;2km+&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-resolution-details field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Spatial Resolution Details&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;750 m @ Nadir; ~1.7 km at swath edge full resolution in L2 granules&lt;br&gt;L3 mapped to 24 sector files (see description tab).&lt;br&gt;And 4 km L3 reduced resolution global mapped in one file.&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="field field--name-field-product-platforms field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Platforms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/platforms/snpp" hreflang="en"&gt;SNPP&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-instruments field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Instruments&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/instruments/viirs" hreflang="en"&gt;VIIRS&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-product-processing-algorit field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Processing Algorithms&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;&lt;a href="https://cwdrupal11.star1.nesdis.noaa.gov/processing-algorithms/msl12" hreflang="en"&gt;MSL12&lt;/a&gt;&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="field field--name-field-data-providers field--type-entity-reference field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Providers&lt;/div&gt;
          &lt;div class="field__items"&gt;
              &lt;div class="field__item"&gt;NOAA&lt;/div&gt;
          &lt;div class="field__item"&gt;NESDIS&lt;/div&gt;
          &lt;div class="field__item"&gt;STAR&lt;/div&gt;
              &lt;/div&gt;
      &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-data-tool-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Data Tool Links&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;&lt;strong&gt;Daily Level-2, granule/swath data:&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=10.00&amp;amp;lon=-83.00&amp;amp;z=2&amp;amp;daysback=15&amp;amp;layer0=basemapWI&amp;amp;layer1=L1nppviirs"&gt;Granule Overlays via CoastWatch Data Portal&lt;/a&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/cwn/data-access-tools/coastwatch-data-portal.html"&gt;CoastWatch Data Portal Spatial Search Tool&lt;/a&gt; (Temporal/Spatial Search)&lt;/p&gt;&lt;p&gt;&lt;strong&gt;Global 4km:&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/cw_html/cwViewer.html?lat=27.00&amp;amp;lon=-83.00&amp;amp;z=3&amp;amp;daysback=15&amp;amp;layer0=basemapWI&amp;amp;layer1=chlSCIVIIRSd"&gt;Daily&lt;/a&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-sample-filenames field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;Sample Filenames&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;V2011355013534_NPP_SCINIR_L2.nc&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-https-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;HTTPS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;table&gt;&lt;tbody&gt;&lt;tr&gt;&lt;td&gt;&lt;p&gt;Daily, global, Level 2 granule/swath (nominal 750 m)&lt;/p&gt;&lt;p&gt;&lt;a href="https://coastwatch.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L2/"&gt;https://coastwatch.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L2/&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Global, Level 3 merged single file, ~4 km&lt;/p&gt;&lt;ul&gt;&lt;li&gt;Chlorophyll-a:&amp;nbsp;&lt;a href="https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/chlora/daily/WW00/"&gt;Daily&lt;/a&gt;&amp;nbsp;&lt;a href="https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/chlora/weekly/WW00/"&gt;Weekly&lt;/a&gt;&amp;nbsp;&lt;a href="https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/chlora/monthly/WW00/"&gt;Monthly&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Diffuse Attenuation Coefficient (&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490) and&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(PAR):&amp;nbsp;&lt;a href="http://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/kd/daily/WW00/"&gt;Daily&lt;/a&gt;&amp;nbsp;&lt;a href="https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/kd/weekly/WW00/"&gt;Weekly&lt;/a&gt;&amp;nbsp;&lt;a href="https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/kd/monthly/WW00/"&gt;Monthly&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Normalized Water Leaving Radiances (nLw’s, all bands):&amp;nbsp;&lt;a href="https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/nlw/daily/WW00/"&gt;Daily&lt;/a&gt;&amp;nbsp;&lt;a href="https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/nlw/weekly/WW00/"&gt;Weekly&lt;/a&gt;&amp;nbsp;&lt;a href="https://coastwatch.star.nesdis.noaa.gov/pub/socd1/mecb/coastwatch/viirs/science/L3/global/nlw/monthly/WW00/"&gt;Monthly&lt;/a&gt;&lt;/li&gt;&lt;/ul&gt;&lt;/td&gt;&lt;/tr&gt;&lt;/tbody&gt;&lt;/table&gt;&lt;/div&gt;
          &lt;/div&gt;

  &lt;div class="clearfix text-formatted field field--name-field-product-thredds-links field--type-text-long field--label-above"&gt;
    &lt;div class="field__label"&gt;THREDDS&lt;/div&gt;
              &lt;div class="field__item"&gt;&lt;p&gt;Top Level of Science Quality,&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global.html"&gt;Life of Mission THREDDS catalog&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Daily, global,&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global_swath_L2.html"&gt;Level 2 granule/swath (nominal 750 m)THREDDS Catalog&lt;/a&gt;&lt;/p&gt;&lt;p&gt;Global, Level 3 merged single file, ~4 km&lt;/p&gt;&lt;ul&gt;&lt;li&gt;Chlorophyll-a:&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global2_chlora_daily.html"&gt;Daily&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global2_chlora_weekly.html"&gt;Weekly&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global2_chlora_monthly.html"&gt;Monthly&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Diffuse Attenuation Coefficient (&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490) and&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(PAR)):&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global2_kd_daily.html"&gt;Daily&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global2_kd_weekly.html"&gt;Weekly&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global2_kd_monthly.html"&gt;Monthly&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Normalized Water Leaving Radiances (nLw’s, all bands):&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global2_nlw_daily.html"&gt;Daily&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global2_nlw_weekly.html"&gt;Weekly&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_lom_global2_nlw_monthly.html"&gt;Monthly&lt;/a&gt;&lt;/li&gt;&lt;/ul&gt;&lt;p&gt;Global, Level 3 merged sectorized files, ~750 m (see sector map under description tab)*&lt;/p&gt;&lt;ul&gt;&lt;li&gt;Chlorophyll-a:&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_npp_lom_sector_chlora_daily.html"&gt;Daily&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_npp_lom_sector_chlora_weekly.html"&gt;Weekly&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_npp_lom_sector_chlora_monthly.html"&gt;Monthly&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Diffuse Attenuation Coefficient (&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(490) and&amp;nbsp;&lt;em&gt;K&lt;sub&gt;d&lt;/sub&gt;&lt;/em&gt;(PAR)):&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_npp_lom_sector_kd_daily.html"&gt;Daily&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_npp_lom_sector_kd_weekly.html"&gt;Weekly&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_npp_lom_sector_kd_monthly.html"&gt;Monthly&lt;/a&gt;&lt;/li&gt;&lt;li&gt;Normalized Water Leaving Radiances (nLw’s, all bands):&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_npp_lom_sector_nlw_daily.html"&gt;Daily&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_npp_lom_sector_nlw_weekly.html"&gt;Weekly&lt;/a&gt;&amp;nbsp;&lt;a href="https://www.star.nesdis.noaa.gov/thredds/socd/coastwatch/catalog_MECB_viirs_npp_lom_sector_nlw_monthly.html"&gt;Monthly&lt;/a&gt;&lt;/li&gt;&lt;/ul&gt;&lt;p&gt;*&lt;em&gt;Note, CW sector 750 m merge files are currently available through ~early January 2019 and are filling in as processing is completed.&lt;/em&gt;&lt;/p&gt;&lt;/div&gt;
          &lt;/div&gt;
</description>
  <pubDate>Thu, 17 Mar 2022 14:30:02 +0000</pubDate>
    <dc:creator>jebidiah.jeffery</dc:creator>
    <guid isPermaLink="false">71 at https://cwdrupal11.star1.nesdis.noaa.gov</guid>
    </item>

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