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This book is a collection of extended papers based on presentations given during the SIMHYDRO 2014 conference, held in Sophia Antipolis in June 2014. It focuses on the modeling and simulation of fast hydraulic transients, on 3D modeling, and on uncertainties and multiphase flows. The book explores both the limitations and performance of current models and presents the latest developments based on new numerical schemes, high-performance computing, multiphysics and multiscale methods, and better interaction with field or scale model data. It addresses the interests of practitioners, stakeholders, researchers and engineers active in this field.
Presents a collection of extended papers from the SIMHYDRO 2014 conference Describes the state-of-the-art in the modeling and simulation of fast hydraulic transients Written by leading experts in the field Includes supplementary material: sn.pub/extras
Texte du rabat
The book is a collection of extended papers which have been selected for presentation during the SIMHYDRO 2014 conference held in Sophia Antipolis in June 2014. The book focuses on the modeling and simulation of fast hydraulic transients, on 3D modeling, and on uncertainties and multiphase flows. The book explores both the limits and performances of actual models and also presents the most recent developments based on new numerical schemes, high performance computing, multiphysics and multiscale, methods, and better interaction with field or scale models data. The book caters to practitioners, stakeholders, researchers and engineers in this field.
Contenu
2D And 3D Modelling in German inland waterways.- Storm events of nice bay: A Numerical modeling of the interactions between wave, current and solid transport.- One-dimensional model for sediment transport: an application to the design of silt bsdins.- Evaluation of flow speed in urbanized areas and flood hazard mapping in flood risk prevention schemes.- Deterministic hydrological model for flood risk assessment of mexico city.- Vulnerability index for urban flooding: understanding social vulnerabilites and risks.