Articles | Volume 19, issue 9
https://doi.org/10.5194/nhess-19-2053-2019
https://doi.org/10.5194/nhess-19-2053-2019
Research article
 | 
26 Sep 2019
Research article |  | 26 Sep 2019

The Floodwater Depth Estimation Tool (FwDET v2.0) for improved remote sensing analysis of coastal flooding

Sagy Cohen, Austin Raney, Dinuke Munasinghe, J. Derek Loftis, Andrew Molthan, Jordan Bell, Laura Rogers, John Galantowicz, G. Robert Brakenridge, Albert J. Kettner, Yu-Fen Huang, and Yin-Phan Tsang

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Cited articles

Casulli, V.: Computational grid, subgrid, and pixels, Int. J. Numer. Meth. Fl., 10, 1–16, 2019. 
Centre for Research on the Epidemiology of Disasters (CRED): The Human Cost of Natural Disasters 2015: A Global Perspective, available at: http://reliefweb.int/report/world/human-cost-natural-disasters-2015-global-perspective(last access: 14 November 2018), 2015. 
Cohen, S. and Raney, A.: FwDET v2.0, available at: https://sdml.ua.edu/models/, last access: 9 September 2019a. 
Cohen, S. and Raney, A.: FwDET v2.0, available at: https://csdms.colorado.edu/wiki/Model_download_portal, last access: 9 September 2019b. 
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Short summary
Flooding is the most destructive natural disaster on Earth. Satellite and airborne imagery are commonly used for flood monitoring and response. While these remote sensing techniques are effective at providing the extent of flooding, they cannot be used to infer the depth of floodwater. This paper describes and analyzes version 2.0 of the Floodwater Depth Estimation Tool (FwDET). FwDET 2.0 offers an enhanced calculation algorithm for coastal regions and much-improved runtime.
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