Predicting Flood Plain Inundation for Natural Channels Having No Upstream Gauged Stations

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Abstract

Flow hydrographs are one of the most important key elements for flood modelling. They are recorded as time series; however, they are not available in most developing countries due to lack of gauged stations. This study presents a flood modelling method for rivers having no upstream gauged stations. The modelling procedure involves three steps: (1) predicting upstream hydrograph by the reverse flood routing method which requires information about channel geometric characteristics, downstream flow stage and downstream flow hydrographs; (2) modelling flood wave spreading using HEC-RAS. The hydrograph predicted by the reverse flood routing in the first step becomes an inflow for the HEC-RAS model; (3) delineating the flood-risk areas by overlapping the Geographical Information System (GIS)-based flood maps produced by the HEC-RAS to the related orthophoto images. The developed model is applied to Guneysu Basin in Rize Province in Eastern Black Sea Region of Turkey. The model-produced flood map is compared to the observed one with success.

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Keywords

Flood modelling, GIS, HEC-RAS, Hydrograph generation, Reverse routing, Hydrograph generation, HEC-RAS, Flood modelling, Reverse routing, GIS

Fields of Science

0208 environmental biotechnology, 0207 environmental engineering, 02 engineering and technology

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OpenCitations Citation Count
45

Volume

10

Issue

2

Start Page

360

End Page

372
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Scopus : 47

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Mendeley Readers : 45

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