Measuring spatial and temporal variation in surface moisture on a coastal beach with a near-infrared terrestrial laser scanner
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Publication date
2018-04
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taverne
Abstract
Wind-alone predictions of aeolian sand deposition on the most seaward coastal dune ridge often exceed measured deposition substantially. Surface moisture is a major factor limiting aeolian transport on sandy beaches, but existing measurement techniques cannot adequately characterize the spatial and temporal distribution of surface moisture content. Here, we present a new method for detecting surface moisture at high temporal and spatial resolution using a near-infrared terrestrial laser scanner (TLS), the RIEGL VZ-400. Because this TLS operates at a wavelength (1550. nm) near a water absorption band, TLS reflectance is an accurate parameter to measure surface moisture over its full range. Five days of intensive laser scanning were performed on a Dutch beach to illustrate the applicability of the TLS. Gravimetric surface moisture samples were used to calibrate the relation between reflectance and surface moisture. Results reveal a robust negative relation for the full range of possible surface moisture contents (0%-25%), with a correlation-coefficient squared of 0.85 and a root-mean-square error of 2.7%. This relation holds between 20 and 60. m from the TLS. Within this distance the TLS typically produces O(106-107) data points, which we averaged into surface moisture maps with a 1. ×. 1. m resolution. This grid size largely removes small reflectance disturbances induced by, for example, footprints or tire tracks, while retaining larger scale moisture trends.
Keywords
Aeolian sand transport, Calibration curve, Coastal, Near-infrared, Surface moisture, Terrestrial laser scanner, Taverne, Geology, Earth-Surface Processes
Citation
Smit, Y, Ruessink, G, Brakenhoff, L B & Donker, J J A 2018, 'Measuring spatial and temporal variation in surface moisture on a coastal beach with a near-infrared terrestrial laser scanner', Aeolian Research, vol. 31, no. Part A, pp. 19-27. https://doi.org/10.1016/j.aeolia.2017.07.004