Advanced Numerical Models For Simulating Tsunami Waves And Runup
Book Details
Format
Hardback or Cased Book
Book Series
Advances In Coastal And Ocean Engineering
ISBN-10
9812700129
ISBN-13
9789812700124
Publisher
World Scientific Publishing Co Pte Ltd
Imprint
World Scientific Publishing Co Pte Ltd
Country of Manufacture
SG
Country of Publication
GB
Publication Date
Oct 2nd, 2008
Print length
344 Pages
Weight
622 grams
Dimensions
23.60 x 16.20 x 2.20 cms
Product Classification:
Mathematical modellingOceanography (seas)
Ksh 20,150.00
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Provides a brief review of the theoretical background for depth-integrated wave equations, which are employed to simulate tsunami runup. This work also describes high-resolution finite volume methods for solving the nonlinear shallow water equations. It focuses on the applications of these methods to tsunami runup.
This review volume is divided into two parts. The first part includes five review papers on various numerical models. Pedersen provides a brief but thorough review of the theoretical background for depth-integrated wave equations, which are employed to simulate tsunami runup. LeVeque and George describe high-resolution finite volume methods for solving the nonlinear shallow water equations. The focus of their discussion is on the applications of these methods to tsunami runup.In recent years, several advanced 3D numerical models have been introduced to the field of coastal engineering to calculate breaking waves and wave-structure interactions. These models are still under development and are at different stages of maturity. Rogers and Dalrymple discuss the Smooth Particles Hydrodynamics (SPH) method, which is a meshless method. Wu and Liu present their Large Eddy Simulation (LES) model for simulating the landslide-generated waves. Finally, Frandsen introduces the lattice Boltzmann method with the consideration of a free surface.The second part of the review volume contains the descriptions of the benchmark problems with eleven extended abstracts submitted by the workshop participants. All these papers are compared with their numerical results with benchmark solutions.
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