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Federal
2021 NOAA Bathymetric Lidar: Sleeping Bear Dunes National Lakeshore, MI
National Oceanic and Atmospheric Administration, Department of Commerce —
Woolpert, Inc. was contracted to acquire and process high-resolution topo-bathy lidar to support mapping and modeling needs at the Sleeping Bear Dunes National... -
Federal
2019 NOAA NGS Topobathy Lidar DEM: Finger Lakes, NY
National Oceanic and Atmospheric Administration, Department of Commerce —
NOAA Finger Lakes Topobathymetric lidar project data were collected by National Oceanic and Atmospheric Administration (NOAA) using a Riegl VQ-880-G sensor system.... -
Federal
U.S. Coastal Relief Model Vol.2 - Southeast Atlantic
National Oceanic and Atmospheric Administration, Department of Commerce —
NGDC's U.S. Coastal Relief Model (CRM) provides the first comprehensive view of the U.S. coastal zone integrating offshore bathymetry with land topography into a... -
Federal
2018-2019 NOAA NGS Topobathy Lidar DEM Hurricane Irma Delivery 1: Miami to Key Largo, FL
National Oceanic and Atmospheric Administration, Department of Commerce —
The NOAA Hurricane Irma Florida Keys Topobathymetric LiDAR Delivery 1 area data were collected by Quantum Spatial, Inc. (QSI) using three Riegl systems: a Riegl... -
Federal
2022 NOAA NGS Topobathy Lidar: Bayonet Point to Cedar Key, FL
National Oceanic and Atmospheric Administration, Department of Commerce —
These data were collected by Dewberry using a CZMIL Super Nova system. The data were acquired from 20221018 through 20221203. The data include topobathy data in LAS... -
Federal
2019 NOAA NGS Topobathy Lidar: Puerto Rico
National Oceanic and Atmospheric Administration, Department of Commerce —
These data were collected by Leading Edge Geomatics using a Riegl VQ-880-G II sensor. The data acqusition began January 20, 2019 through June 2, 2019. The data... -
Federal
2020 NOAA NGS Topobathy Lidar DEM: Anatahan, CNMI
National Oceanic and Atmospheric Administration, Department of Commerce —
Woolpert, Inc. was contracted to acquire and process topographic-bathymetric lidar for the islands of Anatahan, Alamagan, Guguan, and Sarigan in response to Hurricane... -
Federal
2020 NOAA NGS Topobathy Lidar: Anatahan, CNMI
National Oceanic and Atmospheric Administration, Department of Commerce —
Woolpert, Inc. was contracted to acquire and process topographic-bathymetric lidar for the islands of Anatahan, Alamagan, Guguan, and Sarigan in response to Hurricane... -
Federal
2021 NOAA NGS Topobathy Lidar DEM: Revillagigedo Channel, Southeast Alaska
National Oceanic and Atmospheric Administration, Department of Commerce —
NOAA Southeast AK Topobathymetric Lidar data were collected by NV5 Geospatial (NV5) using Leica Hawkeye 4X and Riegl 1560i systems and delivered to NOAA in four... -
Federal
2019 NOAA NGS Topobathy Lidar: Finger Lakes, NY
National Oceanic and Atmospheric Administration, Department of Commerce —
NOAA Finger Lakes Topobathymetric lidar project data were collected by National Oceanic and Atmospheric Administration (NOAA) using a Riegl VQ-880-G sensor system.... -
Federal
2020 NOAA NGS Topobathy Lidar DEM: Sarigan, CNMI
National Oceanic and Atmospheric Administration, Department of Commerce —
Woolpert, Inc. was contracted to acquire and process topographic-bathymetric lidar for the islands of Anatahan, Alamagan, Guguan, and Sarigan in response to Hurricane... -
Federal
2022 NOAA OCM Topobathy Lidar: Washington Island, WI
National Oceanic and Atmospheric Administration, Department of Commerce —
These data were collected by Dewberry using a CZMIL Super Nova system. The data were acquired from 20220719 through 20220816. The data include topobathy data in LAS... -
Federal
2021 NOAA NGS Topobathy Lidar: Gloucester, MA
National Oceanic and Atmospheric Administration, Department of Commerce —
These data were collected by the National Oceanic Atmospheric Administration National Geodetic Survey Remote Sensing Division using a Leica Chiroptera 4X system. The... -
Federal
2022 NOAA NGS Topobathy Lidar: Chatham Bay to Monomoy Point, MA
National Oceanic and Atmospheric Administration, Department of Commerce —
These data were collected by the National Oceanic Atmospheric Administration National Geodetic Survey Remote Sensing Division using a Leica Chiroptera 4X system. The... -
Federal
2022 NOAA OCM Topobathy Lidar DEM: Washington Island, WI
National Oceanic and Atmospheric Administration, Department of Commerce —
These data were collected by Dewberry using a CZMIL Super Nova system. The data were acquired from 20220719 through 20220816. The data are rasterized topobathy lidar... -
Federal
2021 NOAA NGS Topobathy Lidar: Revillagigedo Channel, Southeast Alaska
National Oceanic and Atmospheric Administration, Department of Commerce —
NOAA Southeast AK Topobathymetric Lidar data were collected by NV5 Geospatial (NV5) using Leica Hawkeye 4X and Riegl 1560i systems and delivered to NOAA in four... -
Federal
2019 NOAA NGS Topobathy Lidar DEM: Angelica to Dameron, MD
National Oceanic and Atmospheric Administration, Department of Commerce —
The NOAA Chesapeake Bay MD1804 Option 1 West 4 Topobathymetric lidar data were collected by NV5 Geospatial, Inc. (NV5) using a Riegl VQ-880-GH system. The Chesapeake... -
Federal
1950 - 2023 NOAA Seamless Topobathy DEM (Compiled 2023): Kachemak, Point Hope, Teller, AK
National Oceanic and Atmospheric Administration, Department of Commerce —
NOAA Seamless Topobathy Digital Elevation Model Pilot Incorporating Satellite-Derived Bathymetry - Kachemak, Teller, Point Hope, Alaska, project number... -
Federal
2019 NOAA Lidar: Padilla Bay NERR and Skagit River Delta, WA
National Oceanic and Atmospheric Administration, Department of Commerce —
This dataset is a LiDAR (Light Detection and Ranging) point cloud of the coastal tidal parts of Skagit and Snohomish Counties in WA State. The National Oceanic and... -
Federal
2019 NOAA Topobathy Lidar: Morro Bay, CA
National Oceanic and Atmospheric Administration, Department of Commerce —
These data represent integrated lidar and sonar topobathymetric point cloud data. Quantum Spatial, Inc. (QSI) collected the topobathymetric lidar using a Riegl...