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Climate models, weather data, oceanography, hydrology, atmospheric science, environmental monitoring
28,268 datasets
NASA's DISCOVER-AQ Colorado deployment collected ground-level mobile measurements via the Princeton Mobile Lab and NASA Langley LARGE Mobile Lab. The campaign aimed to validate satellite observations of near-surface pollution by correlating surface measurements with atmospheric column data for ozone, nitrogen dioxide, and formaldehyde. Data collection is complete for the Colorado deployment in 2014.
NASA's DISCOVER-AQ campaign collected surface-level air quality data at the Table Mountain ground site during its 2014 Denver deployment to validate satellite observations. The four-year campaign employed two NASA aircraft, ground monitoring sites, and existing networks to diagnose factors influencing near-surface pollution. Data collection for the Denver deployment is complete.
NASA's DISCOVER-AQ campaign was a four-year field study to improve satellite monitoring of air quality. This dataset contains merged measurements from the P-3B aircraft during the Colorado deployment in 2014, focusing on near-surface pollution factors. Data collection is complete and includes in-situ spiral profiling of aerosols, meteorological variables, and trace gases.
NASA's DISCOVER-AQ campaign collected ground-based air quality data at the Essex site during the Maryland deployment in 2011. The four-year campaign aimed to validate satellite observations of near-surface pollution by correlating surface measurements with atmospheric column data. Data includes measurements of ozone, nitrogen dioxide, formaldehyde, aerosols, and meteorological variables.
The Maryland deployment of NASA's DISCOVER-AQ campaign collected data at the Beltsville ground site to validate satellite observations of near-surface pollution. The campaign involved NASA Langley, Goddard, Ames Research Centers and universities, employing aircraft and ground-based platforms. Data collection is complete for the Maryland deployment, which targeted Baltimore-Washington, D.C. in 2011.
Maryland deployment data collected at the Aldino ground site during NASA's DISCOVER-AQ field study. The dataset likely contains surface-level measurements of aerosol properties, meteorological variables, and trace gas species, collected in conjunction with aircraft observations to validate satellite data. NASA Langley Research Center, NASA Goddard Space Flight Center, NASA Ames Research Center, and multiple universities collaborated on this four-year campaign to improve satellite monitoring of air quality.
NASA's DISCOVER-AQ Colorado deployment collected in situ trace gas data onboard a P-3B aircraft in 2014. The data includes measurements from instruments like DACOM, TD-LIF, DFGAS, LICOR-6252, PTR-MS, TILDAS, and Chemiluminescence. This dataset is part of a four-year campaign to improve the use of satellites for monitoring air quality.
NASA's DISCOVER-AQ campaign collected this ground site data in Colorado to validate satellite observations of near-surface pollution. The four-year study employed aircraft spirals and ground-based platforms to correlate surface conditions with atmospheric column measurements. Data collection is complete for the Colorado deployment, focusing on ozone, nitrogen dioxide, and formaldehyde.
NASA's DISCOVER-AQ campaign collected atmospheric data at the Fairhill ground site during the Maryland deployment in 2011. The data likely contains measurements of aerosol properties, meteorological variables, and trace gas species like ozone, nitrogen dioxide, and formaldehyde. This dataset was produced by NASA Langley Research Center, NASA Goddard Space Flight Center, NASA Ames Research Center, and multiple universities.
NASA's DISCOVER-AQ campaign collected ozonesonde data from three Maryland ground sites to validate satellite observations of near-surface pollution. The four-year project involved NASA Langley, Goddard, Ames, and universities, using aircraft and ground platforms in regions violating air quality standards. Data collection for the Maryland deployment is complete.
Maryland deployment data collected by NASA's High Spectral Resolution Lidar onboard a UC-12 aircraft during the DISCOVER-AQ field study. The campaign was a four-year collaboration between NASA Langley, Goddard, Ames Research Centers, and universities to improve satellite monitoring of air quality. Data collection is complete for this specific deployment.
DISCOVER-AQ_Maryland_UMDAircraft_Data contains data collected onboard a University of Maryland Cessna aircraft during NASA's DISCOVER-AQ field study. The data product is specific to the Maryland deployment and collection is complete. The campaign aimed to improve the use of satellites to monitor air quality by incorporating surface-level measurements from aircraft and ground-based platforms.
A 2011 deployment in Maryland collected in situ trace gas data onboard a P-3B aircraft during NASA's DISCOVER-AQ field study. Measurements were obtained using instruments including DACOM, TD-LIF, DFGAS, LICOR-6252, and PTR-MS. The campaign aimed to improve the use of satellites for monitoring air quality by validating column observations with surface-level measurements.
NASA's DISCOVER-AQ campaign collected airborne remote sensing data to validate satellite observations of ground-level air pollution. The Airborne Compact Atmospheric Mapper instrument on a B-200 aircraft captured data specifically during the 2013 Texas deployment focused on Houston. This dataset is part of a four-year, multi-institution effort to improve the use of satellites for monitoring public health risks from ozone, nitrogen dioxide, and formaldehyde.
DISCOVER-AQ_Texas_Ground_Analysis_Ancillary_Data contains surface-level measurements collected at ancillary ground sites during NASA's DISCOVER-AQ field study deployment in Houston, Texas in 2013. The data product is complete and was collected by NASA Langley Research Center, NASA Goddard Space Flight Center, NASA Ames Research Center, and multiple universities. It aims to validate satellite observations of near-surface pollution by incorporating measurements from aircraft and ground-based platforms.
The 2013 Texas deployment data contains remotely sensed atmospheric measurements collected by NASA's GEO-CAPE Airborne Simulator (GCAS) onboard a B-200 aircraft during the DISCOVER-AQ field study in Houston. This dataset was produced by NASA Langley, Goddard, Ames Research Centers, and multiple universities to improve satellite monitoring of air quality. It focuses on validating satellite observations of ozone, nitrogen dioxide, and formaldehyde by incorporating surface-level measurements.
The 2013 Texas deployment data from NASA's DISCOVER-AQ campaign contains remotely sensed atmospheric measurements collected by the High Spectral Resolution Lidar (HSRL-2) onboard a UC-12 aircraft. The campaign was a four-year effort by NASA and university partners to improve satellite monitoring of air quality. It focused on regions violating air quality standards, including Houston, Texas.
Ozonesonde launch data from the Moody Tower and Smith Point ground sites during NASA's DISCOVER-AQ Texas deployment in Houston. The campaign was a four-year collaboration between NASA Langley, Goddard, Ames Research Centers and multiple universities to improve satellite monitoring of air quality. Data collection is complete for this deployment.
NASA's DISCOVER-AQ campaign collected surface-level measurements at a LaPorte Airport ground site to validate satellite observations of near-surface pollution. The Texas deployment data includes in-situ spiral profiling of aerosol properties, meteorological variables, and trace gas species from aircraft and ground-based platforms. This four-year campaign targeted regions violating National Ambient Air Quality Standards, including Houston in 2013.
Texas (Houston) deployment data collected by the GeoTASO instrument onboard NASA's Falcon aircraft during the DISCOVER-AQ field study. The dataset contains remotely sensed atmospheric column observations to validate satellite measurements of near-surface pollution. The campaign was conducted by NASA Langley, Goddard, Ames Research Centers, and multiple universities over four years.