Numerical modeling techniques for flood analysis

Author:

Anees Mohd Talha,Abdullah K.,Nawawi M.N.M.,Ab Rahman Nik Norulaini Nik,Piah Abd. Rahni Mt.,Zakaria Nor Azazi,Syakir M.I.,Mohd. Omar A.K.

Funder

University Sains Malaysia

Publisher

Elsevier BV

Subject

Earth-Surface Processes,Geology

Reference132 articles.

1. Effects of LiDAR-derived, spatially distributed vegetation roughness on two-dimensional hydraulics in a gravel-cobble river at flows of 0.2 to 20 times bankfull;Abu-Aly;Geomorphology,2014

2. Post seismic debris flow modelling using Flo-2D; case study of Yingxiu, Sichuan Pronvince, China;Adegbe;J. Geogr. Geol.,2013

3. Investigation of SCS-CN and its inspired modified models for runoff estimation in South Korean watersheds;Ajmal;J. Hydro-environ. Res.,2015

4. Comparison between capabilities of HEC-RAS and MIKE11 hydraulic models in river flood risk modelling (a case study of Sungai Kayu Ara River basin, Malaysia);Alaghmand;Int. J. Hydrol. Sci. Technol.,2012

5. Numerical modelling of solid transport caused by an extreme flood: case of the Hamiz dam failure (Algeria);Ali;J. King Saud Univ. – Eng. Sci.,2014

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