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Topography Data Access and Tools
Topography Datasets
| Dataset Sort descending | Version | Platform | Instrument | Temporal Extent | Spatial Extent | Spatial Resolution | Data Format |
|---|---|---|---|---|---|---|---|
| G-LiHT Digital Surface Model V001 | 001 | G-LiHT | Headwall, Riegl Airborne Lidar | 2011-06-30 to Present |
N: 73 S: 10 E: -50 W: -170 |
1 Meters x 1 Meters | GeoTIFF |
| G-LiHT Digital Terrain Model KML V001 | 001 | G-LiHT | Headwall, Riegl Airborne Lidar | 2011-06-30 to Present |
N: 73 S: 10 E: -50 W: -170 |
1 Meters x 1 Meters | KML |
| G-LiHT Digital Terrain Model V001 | 001 | G-LiHT | Headwall, Riegl Airborne Lidar | 2011-06-30 to Present |
N: 73 S: 10 E: -50 W: -170 |
1 Meters x 1 Meters | GeoTIFF |
| G-LiHT Lidar Point Cloud V001 | 001 | Airplane | Headwall, Riegl Airborne Lidar | 2011-06-30 to Present |
N: 73 S: 10 E: -50 W: -170 |
1 Meters x 1 Meters | LAS |
| G-LiHT Metrics V001 | 001 | G-LiHT | Headwall, Riegl Airborne Lidar | 2011-06-30 to Present |
N: 73 S: 10 E: -50 W: -170 |
13 Meters x 13 Meters | GeoTIFF |
| Global 1-km Gridded Thickness of Soil, Regolith, and Sedimentary Deposit Layers | 1 | DEM | HYDROMETERS | 1900-01-01 to 2015-12-31 |
N: 90 S: -60 E: 180 W: -180 |
GeoTIFF | |
| Global Forest Ecosystem Structure and Function Data For Carbon Balance Research | 1 | NOAA-14 | AVHRR | 1897-01-01 to 2006-12-31 |
N: 67.36 S: -42.87 E: 172.75 W: -159.5 |
Shapefile | |
| Global Soil Profile Data (ISRIC-WISE) | 1 | NOT APPLICABLE | NOT APPLICABLE | 1950-01-01 to 1995-12-31 |
N: 90 S: -90 E: 180 W: -180 |
multiple | |
| GPM Ground Validation Airborne Snow Observatory (ASO) OLYMPEX V1 | 1 | UND CITATION II | LIDAR, VISIBLE SPECTROMETER | 2014-09-04 to 2016-03-30 |
N: 48.0909 S: 47.493 E: -123.129 W: -124.185 |
GeoTIFF | |
| GPM Ground Validation Duke Soil Moisture IPHEx | 1 | GROUND STATIONS | INFRARED THERMOMETERS, TEMPERATURE PROBES, THERMOMETERS | 2014-02-27 to 2014-10-17 |
N: 36.5193 S: 35.3731 E: -81.1315 W: -83.5905 |
ASCII, Binary, Excel, PDF, Word | |
| High Mountain Asia 2 m DEM, Surface Velocity, and Lagrangian Surface Mass Balance for Select Debris Covered Glaciers V001 | 1 | GEOEYE-1, WORLDVIEW-1, WORLDVIEW-2, WORLDVIEW-3 | GIS, WV60, WV110 | 2012-12-23 to 2017-12-22 |
N: 28.39 S: 28.2 E: 85.77 W: 85.51 N: 28.12 S: 27.85 E: 87 W: 86.64 |
2 Meters x 2 Meters | GeoTIFF |
| High Mountain Asia 8-meter DEM Mosaics Derived from Optical Imagery V001 | 1 | GEOEYE-1, QUICKBIRD-2, WORLDVIEW-1, WORLDVIEW-2, WORLDVIEW-3 | CAMERAS, QUICKBIRD/BHRC-60 | 2002-01-28 to 2016-11-24 |
N: 46 S: 26 E: 103 W: 67 |
8 Meters x 8 Meters | PNG, GeoTIFF |
| High Mountain Asia 8-meter DEMs Derived from Along-track Optical Imagery V001 | 1 | GEOEYE-1, QUICKBIRD-2, WORLDVIEW-1, WORLDVIEW-2, WORLDVIEW-3 | CAMERAS, QUICKBIRD/BHRC-60 | 2002-01-28 to 2016-11-24 |
N: 46 S: 26 E: 103 W: 67 |
8 Meters x 8 Meters | PNG, GeoTIFF |
| High Mountain Asia 8-meter DEMs Derived from Cross-track Optical Imagery V001 | 1 | GEOEYE-1, QUICKBIRD-2, WORLDVIEW-1, WORLDVIEW-2, WORLDVIEW-3 | CAMERAS, QUICKBIRD/BHRC-60 | 2002-01-28 to 2016-11-24 |
N: 46 S: 26 E: 103 W: 67 |
8 Meters x 8 Meters | PNG, GeoTIFF |
| IceBridge ATM L4 Surface Elevation Rate of Change V001 | 1 | C-130, DC-8, DHC-6, P-3A, P-3A ORION, P-3B, WP-3D ORION | ATM, ACORDS | 1993-06-23 to 2018-05-01 |
N: 90 S: 60 E: 180 W: -180 N: -53 S: -90 E: 180 W: -180 |
250 Meters x 250 Meters | PNG, CSV |
| IceBridge BedMachine Greenland V003 | 3 | DC-8, P-3B | MCoRDS | 1993-01-01 to 2016-12-31 |
N: 90 S: 60 E: 10 W: -80 |
150 Meters x 150 Meters | netCDF-4 |
| IceBridge BedMachine Greenland V004 | 4 | DC-8, P-3B | MCoRDS | 1993-01-01 to 2020-10-01 |
N: 90 S: 60 E: 10 W: -80 |
150 Meters x 150 Meters | netCDF-4 |
| IceBridge BedMachine Greenland V005 | 5 | NASA DC-8, P-3B | MCoRDS | 1993-01-01 to 2021-12-31 |
N: 90 S: 60 E: 10 W: -80 |
150 Meters x 150 Meters | netCDF-4, GeoTIFF |
| IceBridge BedMachine Greenland V006 | 6 | NASA DC-8, P-3B | MCoRDS | 1993-01-01 to 2021-12-31 |
N: 84 S: 59 E: 9 W: -90 |
150 Meters x 150 Meters | netCDF-4, GeoTIFF |
| IceBridge HiCARS 1 L2 Geolocated Ice Thickness V001 | 1 | BT-67, DHC-6 | HiCARS1 | 2009-01-02 to 2010-12-21 |
N: -53 S: -90 E: 180 W: -180 |
XML, ASCII | |
| IceBridge HiCARS 2 L2 Geolocated Ice Thickness V001 | 1 | BT-67, DHC-6 | HiCARS2 | 2010-12-05 to 2013-01-20 |
N: -53 S: -90 E: 180 W: -180 |
XML, ASCII | |
| IceBridge LVIS L1B Geolocated Return Energy Waveforms V001 | 1 | AIRCRAFT, B-200, DC-8, G-V, HU-25C, P-3B, RQ-4 | ALTIMETERS, LASERS, LVIS | 2009-04-14 to 2012-05-10 |
N: -53 S: -90 E: 180 W: -180 N: 90 S: 60 E: 180 W: -180 |
Binary | |
| IceBridge LVIS L1B Geolocated Return Energy Waveforms V002 | 2 | Airplane, B-200, C-130, DC-8, G-V, HU-25C, P-3B, RQ-4 | ALTIMETERS, LASERS, LVIS | 2009-04-14 to 2017-09-20 |
N: -53 S: -90 E: 180 W: -180 N: 90 S: 60 E: 180 W: -180 |
HDF5 | |
| IceBridge 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 | 2009-04-14 to 2015-10-31 |
N: -53 S: -90 E: 180 W: -180 N: 90 S: 60 E: 180 W: -180 |
ASCII | |
| IceBridge LVIS L2 Geolocated Surface Elevation Product V002 | 2 | AIRCRAFT, B-200, C-130, DC-8, G-V, HU-25C, P-3B, RQ-4 | ALTIMETERS, LASERS, LVIS | 2017-08-25 to 2017-09-20 |
N: 90 S: 60 E: 180 W: -180 |
ASCII |
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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