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Using the NASA EOSDIS Common Metadata Repository

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  • MERRA-2 Monthly Gridded Innovations and Observations SEVIRI_M10 0.5 x 0.625 degree V1 (M2_SEVIRI_M10)

    https://cmr.earthdata.nasa.gov/search/concepts/C3944483155-GES_DISC.xml
    Description:

    The MERRA-2 Gridded Innovations and Observations (GIO) dataset provides assimilated observations and key statistics generated during observational data assimilation. GIO data are created by binning observations and innovations onto grids consistent with MERRA-2 specifications and storing them in NetCDF format for convenient access. This dataset serves multiple purposes: it shows which data was assimilated (where and when), enables systematic evaluation of observing system impacts in reanalysis, provides a resource for teaching data assimilation concepts, and offers training data for machine learning and artificial intelligence applications. This collection includes monthly mean and standard deviation values for brightness temperature (mean_obs, stdv_obs) from satellite sensor SEVIRI_M10 along with observation data counts (nobs_obs), and assimilation statistics, including: (a) forecast departure, or observation minus forecast (OmF) (mean_omf, stdv_omf); (b) analysis departure, or observation minus analysis (OmA) (mean_oma, stdv_oma); and (c) bias corrections for satellite radiances (mean_bias, stdv_bias).

    Links: Temporal Extent: Spatial Extent:
    Minimum Bounding Rectangle: -90 -180 90 180

    GES_DISC Short Name: M2_SEVIRI_M10 Version ID: 1 Unique ID: C3944483155-GES_DISC

  • SatCORPS CERES GEO Edition 4 Meteosat-10 Northern Hemisphere Version 1.4

    https://cmr.earthdata.nasa.gov/search/concepts/C3880513942-LARC_CLOUD.xml
    Description:

    CER_GEO_Ed4_MET10_NH_V01.4 is the Satellite Cloud and Radiation Property retrieval System (SatCORPS) Clouds and the Earth's Radiant Energy System (CERES) Geostationary Satellite (GEO) Edition 4 Meteosat-10 over the Northern Hemisphere (NH) Version 1.4 data product. Data was collected using the Spinning Enhanced Visible and Infrared Imager (SEVIRI) Instrument on the Meteosat-10 platform. Note: Version 1.4 uses the Global Modeling and Assimilation Office (GMAO) Modern-Era Retrospective analysis for Research and Applications, Version 2 (MERRA-2) reanalysis for atmospheric input; Version 1.2 used GMAO's GEOS-5.4.1. No changes have been made to the cloud retrieval algorithm. This data set comprises cloud micro-physical and radiation properties derived hourly from Meteosat-10 geostationary satellite imager data using the Langley Research Center (LaRC) SATCORPS algorithms supporting the CERES project. The data set is arranged as files for each hour in netCDF-4 format. The observations are at 3 km resolution (at nadir) and are sub-sampled to 6 km (taking every other line and pixel).

    Links: Temporal Extent: Spatial Extent:
    Polygon: 0 -50 0 60 60 60 60 -50 0 -50

    LARC_CLOUD Short Name: CER_GEO_Ed4_MET10_NH Version ID: V01.4 Unique ID: C3880513942-LARC_CLOUD

  • SatCORPS CERES GEO Edition 4 Meteosat-10 Northern Hemisphere Version 1.2

    https://cmr.earthdata.nasa.gov/search/concepts/C3880513933-LARC_CLOUD.xml
    Description:

    CER_GEO_Ed4_MET10_NH_V01.2 is the Satellite Cloud and Radiation Property retrieval System (SatCORPS) Clouds and the Earth's Radiant Energy System (CERES) Meteosat-10 over the Northern Hemisphere (NH) Version 1.2 data product. Data was collected using the Spinning Enhanced Visible and Infrared Imager (SEVIRI) Instrument on the Meteosat-10 platform. This data set comprises cloud micro-physical and radiation properties derived hourly from Meteosat-10 geostationary satellite imager data using the Langley Research Center (LaRC) SATCORPS algorithms supporting the CERES project. The data set is arranged as files for each hour in netCDF-4 format. If 09K is in the filename, the observations are at 3 km resolution (at nadir) and are sub-sampled to 9 km (taking every third line and pixel). If 06K is in the filename, the observations are at 3 km resolution (at nadir) sub-sampled to 6 km (taking every other line and pixel). CERES is a key Earth Observing System (EOS) program component. The CERES instruments provide radiometric measurements of the Earth's atmosphere from three broadband channels. The CERES missions follow the successful Earth Radiation Budget Experiment (ERBE) mission. The first CERES instrument, the proto flight model (PFM), was launched on November 27, 1997, as part of the Tropical Rainfall Measuring Mission (TRMM). Two CERES instruments (FM1 and FM2) were launched into polar orbit onboard the Earth Observing System (EOS) flagship Terra on December 18, 1999. Two additional CERES instruments (FM3 and FM4) were launched onboard Earth Observing System (EOS) Aqua on May 4, 2002. The CERES FM5 instrument was launched onboard the Suomi National Polar-orbiting Partnership (NPP) satellite on October 28, 2011. The newest CERES instrument (FM6) was launched onboard the Joint Polar-Orbiting Satellite System 1 (JPSS-1) satellite, now called NOAA-20, on November 18, 2017.

    Links: Temporal Extent: Spatial Extent:
    Polygon: 0 -50 0 60 60 60 60 -50 0 -50

    LARC_CLOUD Short Name: CER_GEO_Ed4_MET10_NH Version ID: V01.2 Unique ID: C3880513933-LARC_CLOUD

  • SatCORPS CERES GEO Edition 4 Meteosat-10 Northern Hemisphere Version 1.0

    https://cmr.earthdata.nasa.gov/search/concepts/C3880513923-LARC_CLOUD.xml
    Description:

    CER_GEO_Ed4_MET10_NH_V01 is the Satellite Cloud and Radiation Property retrieval System (SatCORPS) Clouds and the Earth's Radiant Energy System (CERES) Geostationary Satellite (GEO) Edition 4 Meteosat-10 over the Northern Hemisphere (NH) Version 1.0 data product. Data was collected using the Spinning Enhanced Visible and Infrared Imager (SEVIRI) Instrument on the Meteosat-10 platform. Data collection for this product is complete. This data set comprises cloud micro-physical and radiation properties derived hourly from Meteosat-10 geostationary satellite imager data using the Langley Research Center (LaRC) SATCORPS algorithms supporting the CERES project. Each active geostationary satellite's cloud micro-physical and radiation properties are merged to create hourly global cloud properties that estimate fluxes between CERES instrument measurements to account for the changing diurnal cycle. The data set is arranged as files for each hour and in netCDF-4 format. The observations are at 4 km resolution (at nadir) and are sub-sampled to 8 km. CERES is a key Earth Observing System (EOS) program component. The CERES instruments provide radiometric measurements of the Earth's atmosphere from three broadband channels. The CERES missions follow the successful Earth Radiation Budget Experiment (ERBE) mission. The first CERES instrument, the protoflight model (PFM), was launched on November 27, 1997, as part of the Tropical Rainfall Measuring Mission (TRMM). Two CERES instruments (FM1 and FM2) were launched into polar orbit on board the Earth Observing System (EOS) flagship Terra on December 18, 1999. Two additional CERES instruments (FM3 and FM4) were launched on board Earth Observing System (EOS) Aqua on May 4, 2002. The CERES FM5 instrument was launched on board the Suomi National Polar-orbiting Partnership (NPP) satellite on October 28, 2011. The newest CERES instrument (FM6) was launched on board the Joint Polar-Orbiting Satellite System 1 (JPSS-1) satellite, now called NOAA-20, on November 18, 2017.

    Links: Temporal Extent: Spatial Extent:
    Polygon: 0 -50 0 60 60 60 60 -50 0 -50

    LARC_CLOUD Short Name: CER_GEO_Ed4_MET10_NH Version ID: V01 Unique ID: C3880513923-LARC_CLOUD

  • SatCORPS CERES GEO Edition 4 Meteosat-10 Southern Hemisphere Version 1.4

    https://cmr.earthdata.nasa.gov/search/concepts/C3880513969-LARC_CLOUD.xml
    Description:

    CER_GEO_Ed4_MET10_SH_V01.4 is the Satellite Cloud and Radiation Property retrieval System (SatCORPS) Clouds and the Earth's Radiant Energy System (CERES) Geostationary Satellite (GEO) Edition 4 Meteosat-10 over the Southern Hemisphere (SH) Version 1.4 data product. Data was collected using the Spinning Enhanced Visible and Infrared Imager (SEVIRI) Instrument on the Meteosat-10 platform. Note: Version 1.4 uses the Global Modeling and Assimilation Office (GMAO) Modern-Era Retrospective analysis for Research and Applications, Version 2 (MERRA-2) reanalysis for atmospheric input; Version 1.2 used GMAO's GEOS-5.4.1. No changes have been made to the cloud retrieval algorithm. This data set comprises cloud micro-physical and radiation properties derived hourly from Meteosat-10 geostationary satellite imager data using the Langley Research Center (LARC) SATCORPS algorithms supporting the CERES project. The data set is arranged as files for each hour in netCDF-4 format. The observations are at 3 km resolution (at nadir) and are sub-sampled to 6 km (taking every other line and pixel).

    Links: Temporal Extent: Spatial Extent:
    Polygon: -60 -50 -60 60 0 60 0 -50 -60 -50

    LARC_CLOUD Short Name: CER_GEO_Ed4_MET10_SH Version ID: V01.4 Unique ID: C3880513969-LARC_CLOUD

  • SatCORPS CERES GEO Edition 4 Meteosat-10 Southern Hemisphere Version 1.2

    https://cmr.earthdata.nasa.gov/search/concepts/C3880513962-LARC_CLOUD.xml
    Description:

    CER_GEO_Ed4_MET10_SH_V01.2 is the Satellite Cloud and Radiation Property retrieval System (SatCORPS) Clouds and the Earth's Radiant Energy System (CERES) Meteosat-10 over the Southern Hemisphere (SH) Version 1.2 data product. Data was collected using the Spinning Enhanced Visible and Infrared Imager (SEVIRI) Instrument on the Meteosat-10 platform. This data set comprises cloud micro-physical and radiation properties derived hourly from Meteosat-10 geostationary satellite imager data using the Langley Research Center (LaRC) SATCORPS algorithms supporting the CERES project. The data set is arranged as files for each hour in netCDF-4 format. If 09K is in the filename, the observations are at 3 km resolution (at nadir) and are sub-sampled to 9 km (taking every third line and pixel). If 06K is in the filename, the observations are at 3 km resolution (at nadir) sub-sampled to 6 km (taking every other line and pixel). CERES is a key Earth Observing System (EOS) program component. The CERES instruments provide radiometric measurements of the Earth's atmosphere from three broadband channels. The CERES missions follow the successful Earth Radiation Budget Experiment (ERBE) mission. The first CERES instrument, the proto flight model (PFM), was launched on November 27, 1997, as part of the Tropical Rainfall Measuring Mission (TRMM). Two CERES instruments (FM1 and FM2) were launched into polar orbit onboard the Earth Observing System (EOS) flagship Terra on December 18, 1999. Two additional CERES instruments (FM3 and FM4) were launched onboard Earth Observing System (EOS) Aqua on May 4, 2002. The CERES FM5 instrument was launched onboard the Suomi National Polar-orbiting Partnership (NPP) satellite on October 28, 2011. The newest CERES instrument (FM6) was launched onboard the Joint Polar-Orbiting Satellite System 1 (JPSS-1) satellite, now called NOAA-20, on November 18, 2017.

    Links: Temporal Extent: Spatial Extent:
    Polygon: -60 -50 -60 60 0 60 0 -50 -60 -50

    LARC_CLOUD Short Name: CER_GEO_Ed4_MET10_SH Version ID: V01.2 Unique ID: C3880513962-LARC_CLOUD

  • SatCORPS CERES GEO Edition 4 Meteosat-10 Southern Hemisphere Version 1.0

    https://cmr.earthdata.nasa.gov/search/concepts/C3880513951-LARC_CLOUD.xml
    Description:

    CER_GEO_Ed4_MET10_SH_V01 is the Satellite Cloud and Radiation Property retrieval System (SatCORPS) Clouds and the Earth's Radiant Energy System (CERES) Geostationary Satellite (GEO) Edition 4 Meteosat-10 over the Southern Hemisphere (SH) Version 1.0 data product. Data was collected using the Spinning Enhanced Visible and Infrared Imager (SEVIRI) Instrument on the Meteosat-10 platform. Data collection for this product is complete. This data set comprises cloud micro-physical and radiation properties derived hourly from Meteosat-10 geostationary satellite imager data using the Langley Research Center (LARC) SATCORPS algorithms supporting the CERES project. Each active geostationary satellite's cloud micro-physical and radiation properties are merged to create hourly global cloud properties that estimate fluxes between CERES instrument measurements to account for the changing diurnal cycle. The data set is arranged as files for each hour and in netCDF-4 format. The observations are at 3 km resolution (at nadir) and are sub-sampled to 9 km. CERES is a key Earth Observing System (EOS) program component. The CERES instruments provide radiometric measurements of the Earth's atmosphere from three broadband channels. The CERES missions follow the successful Earth Radiation Budget Experiment (ERBE) mission. The first CERES instrument, the protoflight model (PFM), was launched on November 27, 1997, as part of the Tropical Rainfall Measuring Mission (TRMM). Two CERES instruments (FM1 and FM2) were launched into polar orbit on board the Earth Observing System (EOS) flagship Terra on December 18, 1999. Two additional CERES instruments (FM3 and FM4) were launched on board Earth Observing System (EOS) Aqua on May 4, 2002. The CERES FM5 instrument was launched on board the Suomi National Polar-orbiting Partnership (NPP) satellite on October 28, 2011. The newest CERES instrument (FM6) was launched on board the Joint Polar-Orbiting Satellite System 1 (JPSS-1) satellite, now called NOAA-20, on November 18, 2017.

    Links: Temporal Extent: Spatial Extent:
    Polygon: -60 -50 -60 60 0 60 0 -50 -60 -50

    LARC_CLOUD Short Name: CER_GEO_Ed4_MET10_SH Version ID: V01 Unique ID: C3880513951-LARC_CLOUD

  • GHRSST Level 4 OSPO Global Foundation Sea Surface Temperature Analysis (GDS version 2)

    https://cmr.earthdata.nasa.gov/search/concepts/C2036877754-POCLOUD.xml
    Description:

    A Group for High Resolution Sea Surface Temperature (GHRSST) Level 4 sea surface temperature analysis produced daily on an operational basis at the Office of Satellite and Product Operations (OSPO) using optimal interpolation (OI) on a global 0.054 degree grid. The Geo-Polar Blended Sea Surface Temperature (SST) Analysis combines multi-satellite retrievals of sea surface temperature into a single analysis of SST. This analysis uses both daytime and nighttime data from sensors that include the Advanced Very High Resolution Radiometer (AVHRR), the Visible Infrared Imager Radiometer Suite (VIIRS), the Geostationary Operational Environmental Satellite (GOES) imager, the Japanese Advanced Meteorological Imager (JAMI) and in situ data from ships, drifting and moored buoys. This analysis was specifically produced to be used as a lower boundary condition in Numerical Weather Prediction (NWP) models. This dataset adheres to the GHRSST Data Processing Specification (GDS) version 2 format specifications.

    Links: Temporal Extent: Spatial Extent:
    Minimum Bounding Rectangle: -90 -180 90 180

    POCLOUD Short Name: Geo_Polar_Blended-OSPO-L4-GLOB-v1.0 Version ID: 1.0 Unique ID: C2036877754-POCLOUD

  • GHRSST Level 4 OSPO Global Nighttime Foundation Sea Surface Temperature Analysis (GDS version 2)

    https://cmr.earthdata.nasa.gov/search/concepts/C2036877745-POCLOUD.xml
    Description:

    A Group for High Resolution Sea Surface Temperature (GHRSST) Level 4 sea surface temperature analysis produced daily on an operational basis at the Office of Satellite and Product Operations (OSPO) using optimal interpolation (OI) on a global 0.054 degree grid. The Geo-Polar Blended Sea Surface Temperature (SST) Analysis combines multi-satellite retrievals of sea surface temperature into a single analysis of SST. This analysis includes only nighttime data from sensors that include the Advanced Very High Resolution Radiometer (AVHRR), the Visible Infrared Imager Radiometer Suite (VIIRS), the Geostationary Operational Environmental Satellite (GOES) imager, the Japanese Advanced Meteorological Imager (JAMI) and in situ data from ships, drifting and moored buoys. This analysis was specifically produced to be used as a lower boundary condition in Numerical Weather Prediction (NWP) models. This dataset adheres to the GHRSST Data Processing Specification (GDS) version 2 format specifications.

    Links: Temporal Extent: Spatial Extent:
    Minimum Bounding Rectangle: -90 -180 90 180

    POCLOUD Short Name: Geo_Polar_Blended_Night-OSPO-L4-GLOB-v1.0 Version ID: 1.0 Unique ID: C2036877745-POCLOUD

  • Hurricane and Severe Storm Sentinel (HS3) Cooperative Institute for Meteorological Satellite Studies (CIMSS) Brightness Temperature V1

    https://cmr.earthdata.nasa.gov/search/concepts/C1983208537-GHRC_DAAC.xml
    Description:

    The Hurricane and Severe Storm Sentinel (HS3) Cooperative Institute for Meteorological Satellite Studies (CIMSS) Brightness Temperature dataset contains infrared images of brightness temperature from the 15th Geostationary Operational Environmental Satellite (GOES-15) and the 10th Meteorological Satellite (METEOSAT-10) during the Hurricane and Severe Storm sentinel (HS3) field campaign. Goals for the HS3 field campaign included assessing the relative roles of large-scale environment and storm-scale internal processes, addressing the controversial role of the Saharan Air Layer (SAL) in tropical storm formation and intensification, and the role of deep convection in the inner-core region of storms. The images are available for dates between August 14, 2014 and October 3, 2014 at 15 minutes intervals in PNG format.

    Links: Temporal Extent: Spatial Extent:
    Minimum Bounding Rectangle: 12 -180 52 -60

    GHRC_DAAC Short Name: hs3cimssbt Version ID: 1 Unique ID: C1983208537-GHRC_DAAC