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Land Surface Data Access and Tools

NASA data provide key measurements of Earth’s land, allowing researchers to accurately understand its composition, processes, uses, and interactions. Our datasets and tools help researchers translate these interconnected data points into actionable knowledge.

Land Surface Data Tools

Tool Sort descending Description Services
ASF MapReady Terrain-correct, geocode, and apply polarimetric decompositions to multi-pol SAR data Processing
Earthdata Search Earthdata Search enables data discovery, search, comparison, visualization, and access across NASA’s Earth science data holdings. Search and Discovery, Access, Cataloging, Cloud Computing, Downloading
Giovanni Giovanni is a web application for accessing, visualizing, and analyzing Earth science remote sensing data without downloading the data. Search and Discovery, Analysis, Access, Visualization, Downloading, Subsetting
RTC Stack Processor The radiometric terrain correction (RTC) stack processor tool facilitates time-series analysis of such phenomena as flooding events, deforestation, or glacier retreat. Analysis, Processing, Search and Discovery, Visualization
VEDA NASA's Visualization, Exploration, and Data Analysis (VEDA) project is an open-source science cyberinfrastructure for data processing, visualization, exploration, and geographic information systems (GIS) capabilities. Access, Analysis, Processing, Visualization, Geoprocessing
Vertex Vertex is a graphical search interface for finding synthetic aperture radar (SAR) data. Search and Discovery, Access, Downloading, Processing, Subsetting
Worldview Worldview offers the capability to interactively browse over 1,200 global, full-resolution satellite imagery layers and download the underlying data. Analysis, Search and Discovery, Visualization, Access, Comparison, Monitoring Natural Events
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Land Surface Datasets

Dataset Platforms Instruments Temporal Extent Location Keywords Spatial Extent Data Format
VIIRS/JPSS1 Land Surface Temperature/Emissivity Monthly L3 Global 0.05Deg CMG V002 NOAA-20 VIIRS 2018-01-01 to Present GLOBAL N: 90 S: -90 E: 180 W: -180 HDF-EOS5
VIIRS/JPSS1 Nadir BRDF-Adjusted Reflectance Daily L3 Global 1 km SIN Grid NRT NOAA-20 VIIRS 2023-11-20 to Present GLOBAL N: 80 S: -80 E: 180 W: -180 HDF5
VIIRS/JPSS1 Nadir BRDF-Adjusted Reflectance Daily L3 Global 500 m SIN Grid NRT NOAA-20 VIIRS 2023-11-20 to Present GLOBAL N: 80 S: -80 E: 180 W: -180 HDF5
VIIRS/JPSS1 Photosynthetically Active Radiation Daily L3 Global 0.05Deg CMG V002 NOAA-20 VIIRS 2018-01-05 to Present GLOBAL N: 90 S: -90 E: 180 W: -180 HDF-EOS5
VIIRS/JPSS1 Photosynthetically Active Radiation Daily L3 Global 1km SIN Grid V002 NOAA-20 VIIRS 2018-01-05 to Present GLOBAL N: 90 S: -90 E: 180 W: -180 HDF-EOS5
VIIRS/JPSS1 Surface Reflectance 8-Day L3 Global 1km SIN Grid V002 NOAA-20 VIIRS 2018-01-01 to Present GLOBAL N: 90 S: -90 E: 180 W: -180 HDF-EOS5
VIIRS/JPSS1 Surface Reflectance 8-Day L3 Global 500m SIN Grid V002 NOAA-20 VIIRS 2018-01-01 to Present GLOBAL N: 90 S: -90 E: 180 W: -180 HDF-EOS5
VIIRS/JPSS1 Surface Reflectance Daily L2G Global 1km and 500m SIN Grid NRT NOAA-20 VIIRS 2023-10-10 GLOBAL N: 80 S: -80 E: 180 W: -180 h5 (Hierarchical Data Format (version 5))
VIIRS/JPSS1 Surface Reflectance Daily L2G Global 1km and 500m SIN Grid V002 NOAA-20 VIIRS 2018-01-01 to Present GLOBAL N: 90 S: -90 E: 180 W: -180 HDF-EOS5
VIIRS/JPSS1 Surface Reflectance Daily L3 Global 0.05 Deg CMG NRT NOAA-20 VIIRS 2023-10-10 GLOBAL N: 80 S: -80 E: 180 W: -180 HDF5
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