A Sensitivity Analysis of the Waterline Method of Constructing a Digital Elevation Model for Intertidal Areas in ERS SAR scene of Eastern England |
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Authors: | D. C. Mason I. J. Davenport R. A. Flather C. Gurney G. J. Robinson J. A. Smith |
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Affiliation: | a Natural Environment Research Council Environmental Systems Science Centre (ESSC), University of Reading, Reading, RG6 6AL, U.K.;b Proudman Oceanographic Laboratory (POL), Natural Environment Research Council, Bidston Observatory, Birkenhead, Merseyside, L43 7RA, U.K.;c National Remote Sensing Centre Ltd. (NRSC), Delta House, Southwood Crescent, Farnborough, Hants, GU14 0NL, U.K. |
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Abstract: | A sensitivity analysis of the waterline method of constructing a Digital Elevation Model (DEM) of an intertidal zone using remote sensing and hydrodynamic modelling is described. Variation in vertical height accuracy as a function of beach slope is investigated using a set of nine ERS Synthetic Aperture Radar (SAR) images of the Humber/Wash area on the English east coast acquired between 1992 and 1994. Waterlines from these images are heighted using a hydrodynamic tide-surge model and interpolated using block kriging. On 1:500 slope beaches, an average block height estimation standard deviation of 18–22 cm is achieved. This rises to 27 cm on 1:100 slope beaches, and 32 cm on 1:30 slope beaches. The average heighting error at different slopes is decomposed into components due to waterline heighting error, inadequate sensor resolution and interpolation inaccuracy. It is shown that, at 1:500 slope, waterline heighting error and interpolation inaccuracy are the main error sources, whilst at 1:30 slope, errors due to inadequate sensor resolution become dominant. The ability of the technique to generate intertidal DEMs for almost the entire coastal zone in a complete ERS SAR scene covering 100×100 km is demonstrated. |
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Keywords: | intertidal zone digital elevation model remote sensing hydrodynamic modelling Humber Wash |
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