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LiDAR scans were taken using a tripod mounted Riegl VZ-400 scanning LiDAR. The tripod was set up such that the scanner was between 1.5 and 2.5 m tall. The VZ-400 is a near infrared (1550 nm) scanner. Geometric control was achieved using a pair of Trimble RB GPS antennae, one mounted on the LiDAR scanner (rover) and the other setup as a base station. Before taking a LiDAR scan, the VZ-400 would use the GPSs to fix a real time kinematic (RTK) solution for the scanner’s location and then use that position (scan position) as a reference for LiDAR returns. Post processing was done using RIScan-Pro version 2 (scanner specific software). Also, in post-processing, overlapping areas of point clouds were merged and inaccuracies...
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This data release is a companion to Dundas et al., 2020. Additional description of the methods and rationale for data collection is provided there. The primary data are from several categories of data-logging sensors described in detail below. Sixteen images are also included as part of this data release. These document the sensor locations as described in Dundas et al. (2020).


    map background search result map search result map Sensor Data from Monitoring the Cooling of the 2014–2015 Lava Flow and Hydrothermal System at Holuhraun, Iceland NASA GIFT Iceland Highlands: 2015-2019 Baugur LiDAR Sensor Data from Monitoring the Cooling of the 2014–2015 Lava Flow and Hydrothermal System at Holuhraun, Iceland NASA GIFT Iceland Highlands: 2015-2019 Baugur LiDAR