Application of coordinate transformations in numerical simulation of tsunami runup by the large particle method

A numerical algorithm for computing the runup of a solitary tsunami wave in the case of complex shoreline topography is proposed. The algorithm involves the construction of coordinate mappings that transform a uniform rectangular grid over a reference computational domain into a grid over a physical...

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Published inComputational mathematics and mathematical physics Vol. 55; no. 1; pp. 109 - 116
Main Authors Kofanov, A. V., Liseikin, V. D., Rychkov, A. D.
Format Journal Article
LanguageEnglish
Published Moscow Pleiades Publishing 2015
Springer Nature B.V
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Abstract A numerical algorithm for computing the runup of a solitary tsunami wave in the case of complex shoreline topography is proposed. The algorithm involves the construction of coordinate mappings that transform a uniform rectangular grid over a reference computational domain into a grid over a physical domain with mesh refinement near the shoreline. The application of such coordinate mappings makes it possible to substantially reduce the number of grid points and save computation time. The mathematical model is based on the shallow water equations, and the problem is solved using the large particle method. An actual example is used to illustrate the computation of a curvilinear grid and the inundation area configuration.
AbstractList A numerical algorithm for computing the runup of a solitary tsunami wave in the case of complex shoreline topography is proposed. The algorithm involves the construction of coordinate mappings that transform a uniform rectangular grid over a reference computational domain into a grid over a physical domain with mesh refinement near the shoreline. The application of such coordinate mappings makes it possible to substantially reduce the number of grid points and save computation time. The mathematical model is based on the shallow water equations, and the problem is solved using the large particle method. An actual example is used to illustrate the computation of a curvilinear grid and the inundation area configuration.
Author Rychkov, A. D.
Kofanov, A. V.
Liseikin, V. D.
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  surname: Rychkov
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  organization: Institute of Computational Technologies, Siberian Branch, Russian Academy of Sciences
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Cites_doi 10.1134/S0965542512040094
10.1007/978-90-481-2912-6
10.1007/s004660050394
10.2172/6227449
10.1016/j.compfluid.2010.01.016
10.1016/j.jcp.2011.06.002
10.1016/j.jcp.2005.09.004
10.1007/BF00350088
10.1016/j.apm.2005.11.018
10.1080/00221686.2010.9641252
10.1134/S0965542513060109
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Issue 1
Keywords coordinate transformations
tsunami
inverted Beltrami and diffusion equations
adaptive numerical grids
shallow water equations
particle-in-cell method
Language English
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Snippet A numerical algorithm for computing the runup of a solitary tsunami wave in the case of complex shoreline topography is proposed. The algorithm involves the...
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SubjectTerms Accuracy
Computation
Computational mathematics
Computational Mathematics and Numerical Analysis
Coordinate transformations
Diffusion
Earthquakes
Finite volume method
Fluid mechanics
Mapping
Mathematical analysis
Mathematical models
Mathematics
Mathematics and Statistics
Numerical analysis
Shallow water equations
Shoreline protection
Shorelines
Simulation
Studies
Topography
Tsunamis
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Title Application of coordinate transformations in numerical simulation of tsunami runup by the large particle method
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