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Climate models, weather data, oceanography, hydrology, atmospheric science, environmental monitoring
28,268 datasets
11 flights were completed by NASA's ER-2 aircraft during the summer 2019 FIREX-AQ campaign. The dataset contains in-situ meteorological and navigational data collected by the NASA Airborne Science Data Telemetry (NASDAT) System onboard the high-altitude aircraft. FIREX-AQ was a NOAA/NASA interagency study to understand the impact of North American fire emissions on atmospheric chemistry and air quality.
Summer 2019 data from the FIREX-AQ campaign, a NOAA/NASA interagency study of North American fires. The dataset contains merged data products from the NASA DC-8 aircraft, which completed 23 science flights measuring over 200 trace gas species and aerosol properties, alongside data from the NASA ER-2, NOAA Twin Otters, and ground stations. The goal was to understand the impact of fire emissions on tropospheric chemistry and assess satellite detection capabilities.
FIREX-AQ_Aerosol_AircraftInSitu_N48_Data contains in situ aerosol measurements from the NOAA-CHEM Twin Otter aircraft during the 2019 FIREX-AQ campaign. The data, collected by UHSAS, AMS, CLAP, and PILS instruments, focuses on nighttime plume chemistry from Western wildfires. This product is part of a NOAA/NASA interagency study to understand the impact of fire emissions on tropospheric chemistry and air quality.
FIREX-AQ was a major 2019 NOAA/NASA campaign studying North American fire emissions. This dataset contains in situ meteorological and navigational data collected via GPS and probes onboard the NOAA-CHEM Twin Otter aircraft, focusing on nighttime plume chemistry. Data collection is complete and archived at the NASA Atmospheric Science Data Center.
Geoscience Australia aggregated the best available jurisdictional data to produce this geometric representation of major hydrographic polygon elements. It includes both natural and artificial features intended for defining hydrological attributes. The dataset was last updated in April 2026.
North American wildfire plumes were sampled during the 2019 FIREX-AQ campaign. NASA's DC-8 aircraft completed 23 science flights from Boise, Idaho and Salina, Kansas, collecting in-situ cloud data with instruments like the CDP, CPSPD, and CAPS. The data provides detailed measurements of cloud properties within fire-influenced air to study emissions and atmospheric impacts.
23 science flights were conducted by the NASA DC-8 aircraft during the summer 2019 FIREX-AQ campaign. The data contain remotely sensed trace gas measurements from the DOAS instrument, focusing on emissions from wildfires and prescribed fires in North America. The campaign was a NOAA/NASA interagency study to understand fire emissions' impact on tropospheric chemistry and air quality.
23 science flights were completed by the NASA DC-8 aircraft during the summer 2019 FIREX-AQ campaign. This dataset contains in-situ photolysis rate (J-value) measurements from the CAFS instrument onboard the DC-8, part of a larger NOAA/NASA study of North American fire emissions. The campaign aimed to understand the impact of fire emissions on tropospheric chemistry and air quality.
Summer 2019 radiation data collected by the CCD-based Actinic Flux Spectroradiometer (CAFS) onboard a NASA DC-8 aircraft during the FIREX-AQ campaign. The campaign was a NOAA/NASA interagency study of North American fires, involving 23 DC-8 science flights from Boise, Idaho and Salina, Kansas. It aimed to understand the impact of fire emissions on tropospheric chemistry and assess satellite detection capabilities.
In-situ aerosol measurements collected onboard the NASA DC-8 aircraft during the 2019 FIREX-AQ campaign. The dataset features data from instruments including the AMS, CPC, PSAP, CCN, CDP, and Nephelometers, measuring aerosol microphysical, optical, and chemical properties. The campaign was a NOAA/NASA interagency study of North American fires to understand the impact of fire emissions on tropospheric chemistry and air quality.
Summer 2019 in-situ ground measurements collected during the FIREX-AQ campaign, a NOAA/NASA interagency study of North American fires. The data includes aerosol microphysical and optical properties, aerosol chemical compositions, and trace gas species from a ground station in McCall, Idaho and mobile laboratories. The campaign aimed to understand the impact of fire emissions on tropospheric chemistry and assess satellite capabilities for fire detection.
North American wildfire plumes were sampled during summer 2019 by the NASA DC-8 aircraft, which completed 23 science flights from Boise, Idaho and Salina, Kansas. The dataset contains in-situ meteorological and navigational information collected onboard, along with data from the MMS, LGR, and DLH instruments. It was produced by NASA as part of the FIREX-AQ campaign, a NOAA/NASA interagency study to understand fire emissions' impact on tropospheric chemistry and air quality.
North American wildfires were studied during summer 2019 by the FIREX-AQ campaign. This dataset contains in situ trace gas measurements from the NOAA-CHEM Twin Otter aircraft, focusing on nighttime plume chemistry. Data collection is complete and archived at the NASA Atmospheric Science Data Center.
FIREX-AQ was a NOAA/NASA interagency study combining instrumented airplanes, satellites, and ground stations to measure wildfire emissions. The campaign included 23 science flights by a NASA DC-8 aircraft measuring over 200 trace gas species and 11 flights by a NASA ER-2 with satellite analog instruments. Data collection was completed during the summer of 2019, focusing on fires in the Western United States.
North American wildfires were studied during the summer 2019 FIREX-AQ campaign. This dataset contains in situ photolysis rate (j value) data collected onboard the NOAA-CHEM Twin Otter aircraft, which focused on nighttime plume chemistry. The campaign was a NOAA/NASA interagency study to understand the impact of fire emissions on tropospheric chemistry and air quality.
FIREX-AQ_Analysis_N48_Data are supplementary smoke age data derived from models including NAM, GFS, and HRRR, corresponding to the NOAA-CHEM Twin Otter aircraft. The data was collected during the summer 2019 FIREX-AQ campaign, a NOAA/NASA interagency study of North American fires. The campaign utilized instrumented airplanes, satellites, and ground-based stations to measure fire emissions and their impact on tropospheric chemistry and air quality.
FIREX-AQ_N46_Data includes wind profiles and fire temperature measurements from the NOAA-MET Twin Otter aircraft during the 2019 FIREX-AQ campaign. The data collection is complete and was conducted by the NOAA Chemical Sciences Laboratory, integrating measurements from the NightFOX UAS and a wind lidar. This dataset focuses on air movements at fire boundaries to understand local weather impacts and fire movement patterns.
January 25 through February 7, 2020 data from the ER-2 X-band Radar (EXRAD) instrument, providing horizontal wind components, their uncertainties, and radar reflectivity. The dataset was collected by NASA during the IMPACTS field campaign, a three-year study (2020-2023) of snowstorms over the U.S. Atlantic Coast. It aims to improve understanding of snowband formation, microphysics, and snowfall prediction.
Southern Macquarie Ridge seafloor character was mapped using multibeam swath bathymetry, reflectivity, and high-resolution seismic data. The survey was conducted by Geoscience Australia and the National Oceans Office under the AUSTREA program for the Australian Government South-east Regional Marine Plan. The data was last updated in April 2026.
Finnish Meteorological Institute radar data becomes available less than 5 minutes after collection. This open data includes single-radar and composite products over Finland in GeoTIFF and HDF5 formats. Available parameters include radar reflectivity, rainfall intensity, precipitation accumulation, radial velocity, rain classification, and cloud top height.