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Climate models, weather data, oceanography, hydrology, atmospheric science, environmental monitoring
28,225 datasets
HAQES provides 3-hourly ensemble mean surface PM2.5 Black Carbon concentration forecasts at the county level over the continental United States. The Hazardous Air Quality Ensemble System is a real-time forecast system for events like wildfires and dust storms, created by combining models from NASA, NOAA, and other agencies. The prototype was developed by George Mason University as part of the NASA Health Air Quality Applied Science Team.
HAQES provides 3-hourly ensemble mean surface PM2.5 Black Carbon concentration forecasts over the continental United States and surrounding regions. The Hazardous Air Quality Ensemble System is a real-time forecast system for events like wildfires and dust storms, developed by the George Mason University Air Quality Laboratory for NASA's HAQAST. It combines models from NASA, NOAA, the Naval Research Laboratory, and others.
North American county-level ensemble mean forecasts of surface total PM2.5 concentration, updated every three hours. The Hazardous Air Quality Ensemble System (HAQES) combines regional and global models from NASA, NOAA, and the Naval Research Laboratory to predict events like wildfires and dust storms. This prototype was developed by the George Mason University Air Quality Laboratory for the NASA Health Air Quality Applied Science Team.
A real-time ensemble forecast of surface PM2.5 Organic Carbon concentration at 3-hourly intervals over the continental United States. The Hazardous Air Quality Ensemble System (HAQES) combines models from NASA, NOAA, and the Naval Research Laboratory to predict hazardous air quality events like wildfires and dust storms. The prototype was developed by George Mason University as part of the NASA Health Air Quality Applied Science Team.
Geopotential field estimates derived from the Gravity Recovery and Climate Experiment (GRACE) mission measurements and a non-tidal oceanic and atmospheric model. The data are in spherical harmonics averaged over approximately a month, produced by the Center for Space Research (CSR) at the University of Texas at Austin for NASA. The primary objective is to obtain accurate estimates of the mean and time-variable components of Earth's gravity field variations.
FOR EXPERT USE ONLY. This dataset contains monthly-averaged spherical harmonic coefficients representing the Earth's non-tidal geopotential field, derived from the Gravity Recovery and Climate Experiment (GRACE) mission. The data is produced by the German Research Centre for Geosciences (GFZ) and distributed by NASA. It is generated from precise measurements of distance changes between twin spacecraft in a 500 km polar orbit, using microwave ranging and accelerometer data.
Geopotential field estimates derived from NASA's Gravity Recovery and Climate Experiment (GRACE) mission measurements and a non-tidal atmospheric model. The data are provided as spherical harmonics averaged over approximately a month, produced by the NASA Jet Propulsion Laboratory (JPL). The primary objective is to measure time-variable components of Earth's gravity field using precise microwave ranging between twin spacecraft.
NASA JPL Release 6.0 provides estimates of the Earth's geopotential field derived from the Gravity Recovery and Climate Experiment (GRACE) mission. Data are averaged over approximately a month and are based on continuous measurements of distance changes between twin spacecraft in a 500 km polar orbit. The primary objective is to obtain accurate estimates of mean and time-variable gravity field variations.
Florida Keys National Marine Sanctuary and Florida Bay host a network of up to seven Coastal-Marine Automated Network (C-MAN) stations. The SEAKEYS program, operated by NOAA, has collected hourly meteorological and oceanographic data at these sites since 1992, including temperature, salinity, photosynthetically active radiation (PAR), wind, and air pressure. Data supports near real-time environmental alert systems for events like coral bleaching.
JPL TELLUS GRACE-FO Level-3 Monthly Land Water-Equivalent-Thickness Surface Mass Anomaly Release 6.3 version 04 provides terrestrial water storage anomaly grids derived from GRACE-FO satellite gravity observations. The data represents total water storage anomalies from soil moisture, snow, surface water, and groundwater, with applied geophysical corrections. Version 04 incorporates updated C20 and Geocenter corrections and an ellipsoidal correction, and is compatible with the legacy GRACE RL06 data.
A global climatology of monthly mean precipitation developed using 24,635 terrestrial station records and 2,223 oceanic gridpoint estimates. The data were obtained from various archives, screened for errors, and interpolated onto a 0.5-degree latitude/longitude lattice. This dataset is produced by NASA and is used to validate climate models, compare with satellite estimates, and study global water balance.
MetOp-A ASCAT provides a reprocessed Level 2 climate data record of ocean surface wind vectors sampled on a 25 km grid. The wind retrievals use the CMOD7 geophysical model function and are processed by EUMETSAT's OSI SAF via KNMI. Each file corresponds to one complete orbit and is provided in netCDF format.
State-wise monthly climate data for India. The dataset is intended for exploratory data analysis, forecasting, and machine learning applications. It originates from the Kaggle platform, but specific authorship, collection methodology, and temporal coverage are not detailed.
Historical Cairo weather data gathered via public meteorological APIs. The dataset covers a 25-year period from 2000 to 2025. The specific data provider, author, and license details are unknown.
DMIRS-035 is a reference system for petroleum exploration 3D seismic surveys in Western Australia. The dataset is updated regularly and managed by the Department of Energy, Mines, Industry Regulation and Safety.
MetOp-A ASCAT Level 2 12.5-km Ocean Surface Wind Vector Climate Data Record is a reprocessed coastal dataset from the Advanced Scatterometer on the MetOp-A satellite. It is produced by the EUMETSAT Ocean and Sea Ice Satellite Application Facility (OSI SAF) via the Royal Netherlands Meteorological Institute (KNMI). The data provides wind vectors computed as close as ~15 km from coastlines using a spatial box filter on Sigma-0 retrievals.
Discrete sample data from the R/V Nathaniel B. Palmer cruise in the Southern Ocean from 2011-02-19 to 2011-04-23. The dataset includes measurements for 26 parameters such as chlorofluorocarbons, dissolved inorganic carbon, salinity, and nutrients. Data were collected by researchers from NOAA PMEL, Scripps Institution of Oceanography, and RSMAS as part of the CLIVAR Repeat Hydrography Program.
A reference system for petroleum exploration 2D seismic surveys conducted in Western Australia, managed by the Department of Energy, Mines, Industry Regulation and Safety. The dataset includes state-managed surveys updated regularly, with offshore data managed by NOPTA since 2012.
January 1979 to December 2016 daily terrestrial water and energy balance data for the continental United States. The dataset is a high-resolution reanalysis produced by NASA using the Noah 3.3 land-surface model with assimilation of multiple satellite data records. It includes 42 variables such as soil moisture, snow cover, precipitation, and surface temperature.
Northwest Australian Shelf region oceanographic data from a global MITgcm simulation with 1/48-degree (2km) horizontal resolution. The dataset provides hourly estimates of three-dimensional variables like temperature, salinity, and velocity, plus two-dimensional fields including sea level anomaly and surface fluxes. It is produced by the National Aeronautics and Space Administration and was last updated in March 2026.