EAARL Lidar Topography--George Washington Birthplace National Monument 2008

Nayegandhi A. 2008. EAARL Lidar Topography--George Washington Birthplace National Monument 2008. U.S. Geological Survey

A first surface/bare earth elevation map (also known as a Digital Elevation Model, or DEM) of the George Washington Birthplace National Monument in Virginia was produced from remotely sensed, geographically referenced elevation measurements cooperatively by the U.S. Geological Survey (USGS), the National Park Service (NPS), and the National Aeronautics and Space Administration (NASA). Elevation measurements were collected over the area using the NASA Experimental Advanced Airborne Research Lidar (EAARL), a pulsed-laser ranging system mounted onboard an aircraft to measure ground elevation, vegetation canopy, and coastal topography. The system uses high-frequency laser beams directed at the Earth's surface through an opening in the bottom of the aircraft's fuselage. The laser system records the time difference between emission of the laser beam and the reception of the reflected laser signal in the aircraft. The plane travels over the target area at approximately 50 meters per second at an elevation of approximately 300 meters. The EAARL, developed by NASA at Wallops Flight Facility in Virginia, measures ground elevation with a vertical resolution of 15 centimeters. A sampling rate of 3 kilohertz or higher results in an extremely dense spatial elevation dataset. Over 100 kilometers of coastline can be easily surveyed within a 3- to 4-hour mission. When subsequent elevation maps for an area are analyzed, they provide resource managers with a useful tool regarding land development.

Type
Geospatial Dataset
Authors
Nayegandhi, Amar
Date of Issue
2008
Publisher
U.S. Geological Survey
Units
GEWA , NCBN
Keywords
2008, Airborne LiDAR Processing System, Alps, DEM, Digital Elevation Model, EAARL, Experimental Advanced Airborne Research Lidar, First Surface/Bare Earth, George Washington Birthplace National Monument, laser altimetry, Lidar, Remote Sensing, Topography, Virginia

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