Underwater bottom topography in coastal areas from TerraSAR-X data

Brusch S, Held P, Lehner S, Rosenthal W, Pleskachevsky A (2011)


Publication Type: Journal article

Publication year: 2011

Journal

Book Volume: 32

Pages Range: 4527-4543

Journal Issue: 16

DOI: 10.1080/01431161.2010.489063

Abstract

In this article, wave refraction and shoaling in coastal areas were investigated and used to derive the bathymetry. With its high spatial resolution, which can achieve up to 1 m in SpotLight mode, and its low cut-off wavelength, the TerraSAR-X satellite provides images that are particularly suitable for the observation of wave behaviour in transient and shallow waters. By computing the two-dimensional (2D) spectra, shoaling waves were tracked from the open sea to the shoreline. The observed wave refraction and shoaling were compared with wave refraction laws and first-order wave theory (Airy theory). The retrieved bathymetry was compared against depth data from other sources such as ETOPO1, the US Coastal Relief Model and sea charts from the British Admiralty. A further aim of this article was the investigation of breaking waves showing up as near-shore image patterns. A theory is presented of how to derive the height of breaking waves by use of this pattern. Synthetic aperture radar (SAR) images with azimuth as well as range travelling waves were investigated. As test sites, we chose the entrance of Port Phillip near Melbourne (Australia) and the Duck Research Pier in North Carolina (USA). © 2011 Taylor & Francis.

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How to cite

APA:

Brusch, S., Held, P., Lehner, S., Rosenthal, W., & Pleskachevsky, A. (2011). Underwater bottom topography in coastal areas from TerraSAR-X data. International Journal of Remote Sensing, 32(16), 4527-4543. https://doi.org/10.1080/01431161.2010.489063

MLA:

Brusch, Stephan, et al. "Underwater bottom topography in coastal areas from TerraSAR-X data." International Journal of Remote Sensing 32.16 (2011): 4527-4543.

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