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Climate models, weather data, oceanography, hydrology, atmospheric science, environmental monitoring
28,225 datasets
CERES instruments, launched on missions from 1997 to 2017, provide radiometric measurements of Earth's atmosphere. This dataset comprises hourly cloud micro-physical and radiation properties derived from MTSAT-2 geostationary satellite imager data at 4 km resolution, processed by NASA Langley Research Center algorithms. Data collection for this product is complete, and files are arranged hourly in netCDF-4 format.
CER_GEO_Ed4_MTS02_SH_V01.2 is a geostationary satellite data product providing hourly cloud micro-physical and radiation properties. The data is derived from the MTSAT-2 satellite's VISSR instrument at 4 km resolution and is arranged in hourly netCDF-4 files. This product supports NASA's CERES project, a key Earth Observing System program initiated with launches from 1997 to 2017.
Sentinel-5P TROPOMI Tropospheric NO2 1-Orbit L2 data provides high spatial resolution measurements of nitrogen dioxide concentrations from the European Space Agency's Sentinel-5P satellite. The dataset is hosted by NASA's GES DISC and uses the DOMINO retrieval approach to separate stratospheric and tropospheric NO2 columns. It covers wavelengths from ultraviolet-visible to shortwave infrared and has been operational with its current high-resolution format since August 6, 2019.
CER_GEO_Ed4_GOE14_NH_V01 is a data product from NASA's Langley Research Center providing hourly cloud micro-physical and radiation properties derived from GOES-14 geostationary satellite imager data. The dataset supports the Clouds and the Earth's Radiant Energy System (CERES) project, with observations at 4 km resolution sub-sampled to 8 km, arranged in hourly netCDF-4 files. Data collection for this specific product is complete.
Hourly cloud microphysical and radiation properties derived from GOES-9 geostationary satellite imager data at 4 km nadir resolution, subsampled to 8 km. The data set is arranged as hourly files in netCDF-4 format and was produced by NASA's Langley Research Center using SatCORPS algorithms for the CERES project. CERES instruments, first launched in 1997, are a key component of NASA's Earth Observing System, succeeding the Earth Radiation Budget Experiment.
Northern Hemisphere cloud micro-physical and radiation properties derived from GOES-9 geostationary satellite imager data. The dataset comprises hourly files at 4 km resolution (sub-sampled to 8 km) in netCDF-4 format, created by NASA's Langley Research Center using SatCORPS algorithms for the CERES project. Data collection for this product is complete, supporting the CERES mission which began with the first instrument launch in 1997.
CER_GEO_Ed4_MET08_NH_V01.2 is a data product from NASA's SatCORPS and CERES projects providing hourly cloud micro-physical and radiation properties derived from the SEVIRI instrument on the Meteosat-8 geostationary satellite. The dataset, arranged in hourly netCDF-4 files, offers observations at 4 km resolution (sub-sampled to 8 km) over the Northern Hemisphere. CERES instruments, which have flown on multiple missions since 1997, are a key component of NASA's Earth Observing System, succeeding the Earth Radiation Budget Experiment.
CER_GEO_Ed4_MET08_NH_V01.4 is a data product from NASA's SatCORPS and CERES projects. It comprises hourly cloud microphysical and radiation properties derived from the SEVIRI instrument on the Meteosat-8 geostationary satellite. The data is provided at a 3 km nadir resolution, sub-sampled to 6 km, and uses the MERRA-2 reanalysis for atmospheric input.
Hourly cloud microphysical and radiation properties derived from the Spinning Enhanced Visible and Infrared Imager (SEVIRI) on the Meteosat-9 geostationary satellite. The data set is arranged as files for each hour in netCDF-4 format at 4 km resolution (sub-sampled to 8 km) over the Northern Hemisphere. This product is part of the Clouds and the Earth's Radiant Energy System (CERES) project, a key component of NASA's Earth Observing System (EOS).
Hourly cloud micro-physical and radiation properties derived from the Spinning Enhanced Visible and Infrared Imager (SEVIRI) on the Meteosat-8 geostationary satellite over the Southern Hemisphere. The data set is arranged as files for each hour in netCDF-4 format, with observations at a 3 km resolution at nadir, sub-sampled to 9 km. This product was created by NASA's Langley Research Center using SatCORPS algorithms to support the Clouds and the Earth's Radiant Energy System (CERES) project, a key component of the Earth Observing System.
SatCORPS CERES GEO Edition 4 Meteosat-11 Southern Hemisphere Version 1.2 is a data product from NASA's Langley Research Center. It comprises hourly cloud microphysical and radiation properties derived from the SEVIRI instrument on the Meteosat-11 geostationary satellite at 3 km resolution, sub-sampled to 6 km. The data supports the CERES project, a key component of the Earth Observing System, which has flown instruments on missions including TRMM, Terra, Aqua, Suomi NPP, and NOAA-20.
Hourly cloud micro-physical and radiation properties derived from the SEVIRI instrument on the Meteosat-8 geostationary satellite at 4 km nadir resolution. The data set is arranged as hourly files in netCDF-4 format and supports the CERES project, a key component of NASA's Earth Observing System. CERES instruments, first launched in 1997, follow the legacy of the Earth Radiation Budget Experiment mission.
CER_GEO_Ed4_MET11_NH_V01.2 is a NASA Langley Research Center data product providing hourly cloud microphysical and radiation properties derived from the SEVIRI instrument on the Meteosat-11 geostationary satellite. The dataset supports the CERES project, merging geostationary data to estimate fluxes between CERES instrument measurements and account for the diurnal cycle. Observations are at a 4 km resolution at nadir, sub-sampled to 8 km, and are delivered in hourly netCDF-4 files.
SeaFlux provides harmonized global estimates of sea-air carbon dioxide (CO2) fluxes calculated using a standardized bulk formula. The dataset includes the individual components of the flux equationโsea surface pCO2, atmospheric pCO2, gas transfer velocity, solubility, and ice fractionโderived from multiple observational products and reanalyses. This structure allows for consistent intercomparison and error analysis across different methodological choices for key parameters.
A global network of meteorological stations provides long-term monthly mean data for temperature, precipitation, and pressure. The first version, completed in 1992, contains thousands of stations, with 40% having over 50 years of data and 10% over 100 years. The Carbon Dioxide Information Analysis Center and National Climatic Data Center compiled this data to create a consolidated baseline for climate studies.
Compiled geochemical and grain size data from three sections (Zhaojiachaun, Fuxian, Luochuan) on the Chinese Loess Plateau spans the last 800,000 years. The dataset includes S(z) values, amorphous aluminum, silicon, iron, CBD iron, and grain size measurements. It supports research into Pleistocene atmospheric CO2 levels and equilibrium climate sensitivity across glacial and interglacial states.
NOAA's Multi-Year Reanalysis of Remotely Sensed Storms (MYRORSS) provides three-dimensional radar volume data for the contiguous United States. It contains radar reflectivity and derived products like echo top heights and hail size estimates from April 1998 through December 2011. The data was processed through the Multi-Radar, Multi-Sensor framework using NEXRAD Level-II radar and Rapid Update Cycle model analyses.
Daily global land surface reflectance data from the NOAA-21 VIIRS sensor, processed by LPCLOUD. The dataset provides corrected estimates for 12 reflectance bands and 5 brightness temperature bands at a 0.05-degree (~5,600 meter) resolution, formatted for climate simulation models. It includes ancillary information layers such as sensor and solar angles, quality flags, and time of day.
Global daily land surface reflectance data from the NOAA-21 satellite's VIIRS sensor. The product provides estimates for twelve spectral bands at two spatial resolutions, corrected for atmospheric gases and aerosols. It is produced by LPCLOUD using inputs from the VIIRS sensor, cloud mask, aerosol product, and NCEP reanalysis data.
A global 8-day composite land surface reflectance product from the NOAA-21 VIIRS sensor. The data provides corrected estimates for three imagery bands at a nominal 500-meter resolution, with each pixel representing the best quality observation selected over an 8-day period. The product is generated by LPCLOUD from NASA Earthdata.