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Geostationary Earth Orbit Land Surface Temperature Hourly North and South America 4 km V002
https://cmr.earthdata.nasa.gov/search/concepts/C3261922508-LPCLOUD.xmlDescription:The NASA Making Earth System Data Records for Use in Research Environments ([MEaSUREs](https://www.earthdata.nasa.gov/about/competitive-programs/measures)) GEOLST4KHR version 2 swath product provides per-pixel Land Surface Temperature (LST) with a spatial resolution of 4,000 meters (m). The product is produced daily in hourly increments using data acquired from Geostationary Operational Environmental Satellite (GOES) 8 and 10 through 17 satellites for the years 2000 through 2023. The GEOLST4KHR product provides LST values for both North and South America. The GEOLST4KHR data product utilizes the Modern-Era Retrospective analysis for Research and Applications Version 2 / Radiative Transfer for TIROS Operational Vertical Sounder (MERRA-2/RTTOV) Single-Channel Emissivity-Combined ASTER and MODIS Emissivity over Land (CAMEL) algorithm. The GEOLST4KHR product provides layers for cloud mask, latitude, longitude, land surface temperature, and land surface temperature error. A low-resolution browse is also available showing land surface temperature as an RGB (red, green, blue) image in JPEG format.
Links: Temporal Extent: Spatial Extent:Minimum Bounding Rectangle: -20.9590268 -180 71.8922429 3.4957049LPCLOUD Short Name: GEOLST4KHR Version ID: 002 Unique ID: C3261922508-LPCLOUD
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MERRA-2 Monthly Gridded Innovations and Observations SNDR_G10_PREP 0.5 x 0.625 degree V1 (M2_SNDR_G10_PREP)
https://cmr.earthdata.nasa.gov/search/concepts/C3944483929-GES_DISC.xmlDescription: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 SNDR_G10_PREP 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).
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Minimum Bounding Rectangle: -90 -180 90 180GES_DISC Short Name: M2_SNDR_G10_PREP Version ID: 1 Unique ID: C3944483929-GES_DISC
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SatCORPS CERES GEO Edition 4 GOES-10 Northern Hemisphere Version 1.0
https://cmr.earthdata.nasa.gov/search/concepts/C3880508824-LARC_CLOUD.xmlDescription:CER_GEO_Ed4_GOE10_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 Geostationary Operational Environmental Satellite 10 (GOES-10) over the Northern Hemisphere (NH) Version 1.0 data product. Data was collected using the GOES-I-M Imager on the GOES-10 Platform. Data collection for this product is complete. This data set comprises cloud micro-physical and radiation properties derived hourly from GOES-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.
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Polygon: 0 -180 0 -30 60 -30 60 -180 0 -180LARC_CLOUD Short Name: CER_GEO_Ed4_GOE10_NH Version ID: V01 Unique ID: C3880508824-LARC_CLOUD
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SatCORPS CERES GEO Edition 4 GOES-10 Southern Hemisphere Version 1.0
https://cmr.earthdata.nasa.gov/search/concepts/C3880509040-LARC_CLOUD.xmlDescription:CER_GEO_Ed4_GOE10_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 Geostationary Operational Environmental Satellite 10 (GOES-10) over the Southern Hemisphere (SH) Version 1.0 data product. Data was collected using the GOES-I-M Imager on the GOES-10 Platform. Data collection for this product is complete. This data set comprises cloud micro-physical and radiation properties derived hourly from GOES-10 geostationary satellite imager data using the Langley Research Center's (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.
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Polygon: -60 -180 -60 -30 0 -30 0 -180 -60 -180LARC_CLOUD Short Name: CER_GEO_Ed4_GOE10_SH Version ID: V01 Unique ID: C3880509040-LARC_CLOUD
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COMET Case Study 021: Wichita, Kansas Halloween Flood Data at UCAR/JOSS/NOAA/CODIAC
https://cmr.earthdata.nasa.gov/search/concepts/C1214584321-SCIOPS.xmlDescription:Case 021 focuses on the 11 inch rainfall in south-central Kansas which caused four main rivers to experience record flooding. There were numerous incidents of flash flooding which closed roads and resulted in one automobile-related fatality. For more information, see: http://data.eol.ucar.edu/codiac/projs?COMET_CASE_021
Links: Temporal Extent: Spatial Extent:Minimum Bounding Rectangle: 34 -102 40 -95SCIOPS Short Name: COMET021_UCAR_JOSS_NOAA_CODIAC Version ID: Not provided Unique ID: C1214584321-SCIOPS
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COMET Case Study 023: Upper Midwest U.S. Winter Severe Weather 1998 Data at UCAR/JOSS/NOAA/CODIAC
https://cmr.earthdata.nasa.gov/search/concepts/C1214584322-SCIOPS.xmlDescription:Case 023 follows the development of a strong extratropical cyclone that took place from 8-11 November 1998. Severe weather that accompanied the case included blizzard conditions in the Upper Midwest and severe thunderstorms over the Mississippi Valley. For more information, see: http://data.eol.ucar.edu/codiac/projs?COMET_CASE_023
Links: Temporal Extent: Spatial Extent:Minimum Bounding Rectangle: 26.3 -142.5 56.7 -55.7SCIOPS Short Name: COMET023_UCAR_JOSS_NOAA_CODIAC Version ID: Not provided Unique ID: C1214584322-SCIOPS
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COMET Case Study 025: Salt Lake City Tornado/Long Island Flood 1999 Data at UCAR/JOSS/NOAA/CODIAC
https://cmr.earthdata.nasa.gov/search/concepts/C1214584299-SCIOPS.xmlDescription:Case 025 represents one of the most devastating weather events in Utah's history. On August 11th 1999 a tornado moved through downtown Salt Lake City between 18:45 and 18:55 UTC. The tornado damage was rated as F2 on the Fujita scale, and was resonsible for the first recorded tornado death in the state's history and dozens of injuries. Hail up to 1.5 inches in diameter was also reported from this storm. In addition, on the East Coast, flash floods impacted Long Island. Between 13Z and 17Z on August 11, clusters of thunderstorms formed along a warm front. As they moved very slowly east, they produced heavy rain that caused flash flooding from Deer Park to Manorville, NY. Rainfall rates estimated at 1 to 2 inches per hour for up to 3 hours generated rainfall totals from 3 to 5 inches. Water, rapidly accumulating in low-lying areas, swept cars away and trapped people in their vehicles. For more information, see: http://data.eol.ucar.edu/codiac/projs?COMET_CASE_025
Links: Temporal Extent: Spatial Extent:Minimum Bounding Rectangle: 25 -125.5 48.8 -66.9SCIOPS Short Name: COMET025_UCAR_JOSS_NOAA_CODIAC Version ID: Not provided Unique ID: C1214584299-SCIOPS
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COMET Case Study 026: Pacific Northwest Winter Storm 1999 Data at UCAR/JOSS/NOAA/CODIAC
https://cmr.earthdata.nasa.gov/search/concepts/C1214584341-SCIOPS.xmlDescription:Case 026 follows an early winter storm moving onshore in thePacific Northwest on November 24, 1999. The storm brought heavy precipitation, while the associated cold front brought strong winds to the coasts of Oregon and Washington. The north Oregon coastline reported high winds November 24, as Conon Beach reported wind of 55-60 knots with gusts to 69 knots, while Arch Cape also reported gusts to 69 knots. The northern Oregon coast reported up to 10 inches of rain, causing flodding and landslides. For more information, see: http://data.eol.ucar.edu/codiac/projs?COMET_CASE_026
Links: Temporal Extent: Spatial Extent:Minimum Bounding Rectangle: 39 -127.5 55.1 -111SCIOPS Short Name: COMET026_UCAR_JOSS_NOAA_CODIAC Version ID: Not provided Unique ID: C1214584341-SCIOPS
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COMET Case Study 029: Montana Fire Weather-Dry Cold Front 1999 Data at UCAR/JOSS/NOAA/CODIAC
https://cmr.earthdata.nasa.gov/search/concepts/C1214584362-SCIOPS.xmlDescription:A dry cold front passed through eastern Montana on 31 October 1999 bringing in a strong northwest wind behind it. Warmer and drier than normal conditions existed in the region at this time, so with the addition of strong wind, the fire danger rose greatly. Sustained winds of 50+ knots and gusts to near 80 knots were reported in eastern Montana, driving fires near the towns of Outlook and Wolf Point. Over $12 million in damages are estimated statewide from the strong wind and fires. For more information, see: http://data.eol.ucar.edu/codiac/projs?COMET_CASE_029
Links: Temporal Extent: Spatial Extent:Minimum Bounding Rectangle: 36 -132 59 -94SCIOPS Short Name: COMET029_UCAR_JOSS_NOAA_CODIAC Version ID: Not provided Unique ID: C1214584362-SCIOPS
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COMET Case Study 030: Null Event: Eastern Colorado Snowstorm 2000 Data at UCAR/JOSS/NOAA/CODIAC
https://cmr.earthdata.nasa.gov/search/concepts/C1214584324-SCIOPS.xmlDescription:This case is the first in a series of null-event cases and presents a developing winter storm in the Desert Southwest and its effect on Eastern Colorado's weather, on 20 March, 2000. Forecasts of over a foot of snowfall by late evening on Monday the 20th of March were issued as early as the afternoon of Sunday the 19th of March, from Denver to Fort Collins. By 10 p.m. Monday, snow reports from most areas along the Front Range were only 3 to 5 inches. For more information, see: http://data.eol.ucar.edu/codiac/projs?COMET_CASE_030
Links: Temporal Extent: Spatial Extent:Minimum Bounding Rectangle: 31.3 -120 43.7 -99SCIOPS Short Name: COMET030_UCAR_JOSS_NOAA_CODIAC Version ID: Not provided Unique ID: C1214584324-SCIOPS
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