Mapping dune dynamics by InSAR coherence
It is generally held that subtle changes in sandy environments are very difficult to detect in imagery. Nonetheless, this study demonstrates how synthetic aperture radar (SAR) interferometric decorrelation can be used to identify changes in individual sand dunes. The use of coherence maps over time...
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Veröffentlicht in: | Earth surface processes and landforms 2018-05, Vol.43 (6), p.1229-1240 |
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Sprache: | eng |
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Zusammenfassung: | It is generally held that subtle changes in sandy environments are very difficult to detect in imagery. Nonetheless, this study demonstrates how synthetic aperture radar (SAR) interferometric decorrelation can be used to identify changes in individual sand dunes. The use of coherence maps over time facilitates the analysis of dune dynamics, both temporally and spatially. The Ashdod‐Nizzanim coastal dunes, along the southern coastal plain of Israel, were chosen as an illustrative example of the analysis of dune dynamics. High‐resolution TerraSAR‐X (TSX) radar images covering the entire research area were acquired for the period February to July 2012, together with meteorology data (wind and rain) for the area. The coherence results enabled the stability of individual dunes to be described as a function of time. It was found that the dune crests were more stable than the windward slopes and that the degree of stability was dependent on the distance of the dune from the sea. The results of this study show the potential of using interferometric synthetic aperture radar (InSAR) decorrelation for aeolian studies, even in areas characterized by low coherence. Copyright © 2017 John Wiley & Sons, Ltd.
InSAR coherence can be exploited to identify and map dune geomorphic stability and instability as a function of time and space. The coherence method was applied to individual dunes within a dune field, instead of the entire area. The Ashdod‐Nizzanim coastal dune crests were found to be more stable than their windward slopes. In addition, the degree of stability was dependent on the dune's distance from the sea. |
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ISSN: | 0197-9337 1096-9837 |
DOI: | 10.1002/esp.4309 |