Topography Data Access and Tools
NASA data detail topography across the land surface, ocean, cryosphere, terrestrial hydrosphere and within the context of climate change. Our datasets and tools help researchers translate these interconnected data points into actionable knowledge.
Topography Datasets
| Dataset Sort descending | Version | Platform | Instrument | Temporal Extent | Spatial Extent | Spatial Resolution | Data Format |
|---|---|---|---|---|---|---|---|
| ABoVE: Active Layer and Soil Moisture Properties from AirMOSS P-band SAR in Alaska | 1 | G-III, MODELS | RADAR, Computer | 2014-08-16 to 2017-10-10 |
N: 70.8774 S: 64.7127 E: -150.249 W: -167.944 |
netCDF-4 classic | |
| ABoVE: AirSWOT Ka-band Radar over Surface Waters of Alaska and Canada, 2017 | 1 | B-200 | AirSWOT | 2017-07-08 to 2017-08-17 |
N: 70.4944 S: 46.8451 E: -98.629 W: -149.834 |
multiple | |
| ABoVE: AirSWOT Radar, Orthomosaic, and Water Masks, Yukon Flats Basin, Alaska, 2015 | 1 | B-200 | AirSWOT, CAMERA | 2015-06-15 to 2015-06-15 |
N: 66.8978 S: 65.9282 E: -145 W: -148 |
multiple | |
| ABoVE: Characterization of Burned and Unburned Boreal Forest Stands, SK, Canada, 2016 | 1 | FIELD SURVEYS, MODELS | STEEL MEASURING TAPE, SOIL SAMPLER, CLINOMETERS, GPS, Computer | 2016-05-30 to 2016-06-16 |
N: 57.3646 S: 54.091 E: -104.693 W: -109.173 |
CSV | |
| ABoVE: Characterization of Burned and Unburned Spruce Forest Sites, Tanana, AK, 2017 | 1 | FIELD SURVEYS, LANDSAT | PROBES, SOIL MOISTURE PROBE, TM | 2017-07-26 to 2017-07-28 |
N: 65.2315 S: 65.0968 E: -151.951 W: -152.416 |
CSV | |
| ABoVE: Dall Sheep Response to Snow and Landscape Covariates, Alaska, 2005-2008 | 1 | MODELS, Terra, Aqua | Computer, MODIS | 2005-09-01 to 2008-08-31 |
N: 61.0517 S: 59.976 E: -153.033 W: -154.526 |
netCDF-4 classic | |
| ABoVE: Land Cover, Methane Flux, and Environmental Data, Big Trail Lake, Fairbanks AK | 1 | MODELS, FIELD INVESTIGATION | Computer, SOIL MOISTURE PROBE | 2017-05-28 to 2022-08-23 |
N: 64.9231 S: 64.9201 E: -147.816 W: -147.825 |
multiple | |
| ABoVE LVIS L0 Raw Ranges V001 | 1 | B-200, C-130, DC-8, G-V, HU-25C, P-3B, RQ-4 | LVIS, LVIS Camera | 2017-06-29 to 2017-07-17 |
N: 72 S: 48 E: -104 W: -158 |
Binary, JPEG, ASCII | |
| ABoVE LVIS L2 Geolocated Surface Elevation Product V001 | 1 | AIRCRAFT, B-200, C-130, DC-8, G-V, HU-25C, P-3B, RQ-4 | ALTIMETERS, LASERS, LVIS | 2017-06-29 to 2017-07-17 |
N: 72 S: 48 E: -104 W: -158 |
ASCII | |
| ABoVE: LVIS L3 Gridded Vegetation Structure across North America, 2017 and 2019 | 1 | G-V | LVIS | 2017-06-29 to 2019-08-08 |
N: 78.1366 S: 7.126 E: -28.8244 W: -167.324 |
multiple | |
| ABoVE: Permafrost Measurements and Distribution Across the Y-K Delta, Alaska, 2016 | 1 | IKONOS, FIELD SURVEYS, Airplane | Schmidt-Cassegrain Telescope, SOIL DEPTH PROBE, LIDAR | 2009-06-27 to 2016-07-17 |
N: 61.2881 S: 61.1694 E: -165.03 W: -165.69 |
multiple | |
| ABoVE: Synthesis of Burned and Unburned Forest Site Data, AK and Canada, 1983-2016 | 1 | MODELS, FIELD INVESTIGATION | Computer, PROBES, SOIL SAMPLER | 1983-01-01 to 2016-08-08 |
N: 67.2297 S: 53.1911 E: -88.612 W: -150.902 |
CSV | |
| ABoVE: Terrestrial Lidar Scanning Forest-Tundra Ecotone, Brooks Range, Alaska, 2016 | 1 | FIELD SURVEYS | LIDAR | 2016-06-14 to 2016-06-25 |
N: 68.0204 S: 67.9704 E: -149.715 W: -149.765 |
multiple | |
| ABoVE: Tundra Plant Functional Type Continuous-Cover, North Slope, Alaska, 2010-2015 | 1 | LANDSAT-5, LANDSAT-7, LANDSAT-8 | TM, ETM+, OLI | 2010-07-01 to 2015-08-31 |
N: 73.8004 S: 65.5858 E: -143.978 W: -167.476 |
multiple | |
| AfriSAR: Canopy Structure Derived from PolInSAR and Coherence TomoSAR NISAR tools | 1 | UAV | UAVSAR | 2016-02-25 to 2016-03-08 |
N: 0.61 S: -2.07788 E: 11.8642 W: 9.16944 |
GeoTIFF | |
| AfriSAR: Gridded Forest Biomass and Canopy Metrics Derived from LVIS, Gabon, 2016 | 1 | MODELS, B-200 | Computer, LVIS | 2016-02-20 to 2016-03-08 |
N: 0.631722 S: -2.29494 E: 12.0244 W: 9.17929 |
multiple | |
| AfriSAR LVIS L0 Raw Ranges V001 | 1 | B-200, C-130, DC-8, G-V, HU-25C, P-3B, RQ-4 | LVIS, LVIS-Camera | 2016-02-20 to 2016-03-08 |
N: 1 S: -2 E: 12 W: 8 |
Binary, JPEG, ASCII | |
| AfriSAR LVIS L2 Geolocated Surface Elevation Product V001 | 1 | AIRCRAFT, B-200, C-130, DC-8, G-V, HU-25C, P-3B, RQ-4 | ALTIMETERS, LASERS, LVIS | 2016-02-20 to 2016-03-08 | ASCII | ||
| AfriSAR: Polarimetric Height Profiles by TomoSAR, Lope and Rabi Forests, Gabon, 2016 | 1 | UAV | UAVSAR | 2016-02-25 to 2016-02-28 |
N: 0.100091 S: -2.08153 E: 11.859 W: 9.67202 |
HDF5 | |
| AfriSAR: Rainforest Canopy Height Derived from PolInSAR and Lidar Data, Gabon | 1 | B-200, COMPUTERS, UAV | LVIS, Computer, UAVSAR | 2016-02-27 to 2016-03-08 |
N: 0.239961 S: -0.347461 E: 11.8303 W: 9.28806 |
GeoTIFF | |
| ALOS AVNIR-2 Ortho Rectified Image Product | 2 | ALOS | AVNIR-2 | 2006-01-23 to 2011-05-23 |
N: 90 S: -90 E: 180 W: -180 |
||
| ALOS AVNIR-2 Ortho Rectified Image Product | Version 2 | ALOS | AVNIR | 2006-01-23 to 2011-05-23 | |||
| ALOS PALSAR High Resolution Radiometric Terrain Corrected Product | 1 | ALOS | PALSAR | 2006-03-23 to 2011-04-22 |
N: 90 S: -90 E: 180 W: -180 |
||
| ALOS PALSAR Level 1.0 Product | 1 | ALOS | PALSAR | 2006-03-23 to 2011-04-22 |
N: 90 S: -90 E: 180 W: -180 |
||
| ALOS PALSAR Level 1.1 Product | 1 | ALOS | PALSAR | 2006-01-23 to 2011-05-23 |
N: 90 S: -90 E: 180 W: -180 |
Topography Featured Observation Method: ICESat-2
NASA's Ice, Cloud, and Land Elevation Satellite-2 (ICESat-2) allows scientists to measure the elevation of ice sheets, glaciers, sea ice, and land across Earth's temperate and tropical regions, as well as take stock of the vegetation in forests worldwide. ICESat-2 carries the Advanced Topographic Laser Altimeter System (ATLAS), which sends 10,000 pulses of laser light to the ground per second and then measures how long it takes them be reflected back by the surface to determine the area's elevation. Learn more about ICESat-2/ATLAS near real-time data provided by NASA's Land, Atmosphere Near real-time Capability for Earth observation (LANCE). ICESat-2 carries the Advanced Topographic Laser Altimeter System (ATLAS), which sends pulses of laser light to the ground, collects the returning photons in a telescope, and records the photon travel time.
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