2012 USGS EAARL-B Coastal Topography: Post-Sandy, First Surface (NJ)

ASCII xyz and binary point-cloud data, as well as a digital elevation model (DEM) of a portion of the New Jersey coastline, pre- and post-Hurricane Sandy (October 2012 hurricane), were produced from remotely sensed, geographically referenced elevation measurements by the U.S. Geological Survey (USGS). Elevation measurements were collected over the area using the second-generation Experimental Advanced Airborne Research Lidar (EAARL-B), 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 55 meters per second at an elevation of approximately 300 meters, resulting in a laser swath of approximately 240 meters with an average point spacing of 0.5 - 1.6 meters. The nominal vertical elevation accuracy expressed as the root mean square error (RMSE) is 20 centimeters. A peak sampling rate of 15 - 30 kilohertz results in an extremely dense spatial elevation dataset. Over 100 kilometers of coastline can be surveyed easily within a 3-to-4-hour mission. When resultant elevation maps for an area are analyzed, they provide a useful tool to make management decisions regarding land development.

Data and Resources

Field Value
accessLevel public
accrualPeriodicity irregular
bureauCode {006:48}
catalog_@context https://project-open-data.cio.gov/v1.1/schema/catalog.jsonld
catalog_conformsTo https://project-open-data.cio.gov/v1.1/schema
catalog_describedBy https://project-open-data.cio.gov/v1.1/schema/catalog.json
identifier 2012 USGS EAARL-B Coastal Topography: Post-Sandy, First Surface (NJ)
language {en-US}
modified 2014-01-01
old-spatial {"type": "Polygon", "coordinates": [[[-74.9999856, 38.84877268], [-73.93982939, 38.84877268], [-73.93982939, 40.5568922], [-74.9999856, 40.5568922], [-74.9999856, 38.84877268]]]}
programCode {000:000}
publisher Cherokee Nation Technology Solutions, U.S. Geological Survey, St. Petersburg Coastal and Marine Science Center, St. Petersburg, FL (Point of Contact)
resource-type Dataset
source_datajson_identifier true
source_hash db31752ad5edf11a0cbd988019bb39c70991ac18
source_schema_version 1.1
spatial {"type": "Polygon", "coordinates": [[[-74.9999856, 38.84877268], [-73.93982939, 38.84877268], [-73.93982939, 40.5568922], [-74.9999856, 40.5568922], [-74.9999856, 38.84877268]]]}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • 2012
  • airborne-lidar-processing-system
  • alps
  • amerigeo
  • amerigeoss
  • atlantic
  • atlantic-ocean
  • cape-may
  • cessna-310
  • ckan
  • dem
  • digital-elevation-model
  • doi-usgs-cmg-coastal-and-marine-geology
  • eaarl-b
  • experimental-advanced-airborne-research-lidar
  • first-surface
  • geo
  • geoss
  • land-surface-topography-terrain-elevation
  • laser-altimetry
  • lidar
  • lidar-light-detection-and-ranging
  • monmouth
  • national
  • new-jersey
  • north-america
  • ocean
  • ocean-coastal-processes-barrier-islands
  • ocean-coastal-processes-beaches
  • ocean-coastal-processes-shoreline-displacement
  • post-hurricane-sandy
  • pre-hurricane-sandy
  • remote-sensing
  • topography
  • u-s-department-of-interior
  • u-s-geological-survey
  • united-states
isopen False
license_id notspecified
license_title License not specified
maintainer Xan Fredericks
maintainer_email afredericks@usgs.gov
metadata_created 2025-11-22T18:12:36.370120
metadata_modified 2025-11-22T18:12:36.370124
notes ASCII xyz and binary point-cloud data, as well as a digital elevation model (DEM) of a portion of the New Jersey coastline, pre- and post-Hurricane Sandy (October 2012 hurricane), were produced from remotely sensed, geographically referenced elevation measurements by the U.S. Geological Survey (USGS). Elevation measurements were collected over the area using the second-generation Experimental Advanced Airborne Research Lidar (EAARL-B), 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 55 meters per second at an elevation of approximately 300 meters, resulting in a laser swath of approximately 240 meters with an average point spacing of 0.5 - 1.6 meters. The nominal vertical elevation accuracy expressed as the root mean square error (RMSE) is 20 centimeters. A peak sampling rate of 15 - 30 kilohertz results in an extremely dense spatial elevation dataset. Over 100 kilometers of coastline can be surveyed easily within a 3-to-4-hour mission. When resultant elevation maps for an area are analyzed, they provide a useful tool to make management decisions regarding land development.
num_resources 5
num_tags 37
title 2012 USGS EAARL-B Coastal Topography: Post-Sandy, First Surface (NJ)