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 in | Computational mathematics and mathematical physics Vol. 55; no. 1; pp. 109 - 116 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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. |
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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. |
Author_xml | – sequence: 1 givenname: A. V. surname: Kofanov fullname: Kofanov, A. V. email: avkof87@gmail.com organization: Institute of Computational Technologies, Siberian Branch, Russian Academy of Sciences – sequence: 2 givenname: V. D. surname: Liseikin fullname: Liseikin, V. D. organization: Institute of Computational Technologies, Siberian Branch, Russian Academy of Sciences, Novosibirsk State University – sequence: 3 givenname: A. D. surname: Rychkov fullname: Rychkov, A. D. 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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Keywords | coordinate transformations tsunami inverted Beltrami and diffusion equations adaptive numerical grids shallow water equations particle-in-cell method |
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References | Kashiyama, Ohba, Takagi, Behr, Tezduyar (CR2) 1999; 23 Mohammadian, Le Roux, Tajrishi (CR3) 2007; 31 Kofanov, Liseikin (CR10) 2013; 53 Winslow (CR16) 1981 Garanzha (CR17) 2000; 40 Khrapov, Khoperskov, Kuz’min, Pisarev, Kobelev (CR7) 2011; 12 Danaev, Liseikin, Yanenko (CR15) 1980 Oger, Doring, Alessandrini, Ferrant (CR6) 2006; 213 Lai, Guo, Lin, Tan (CR4) 2010; 62 Belotserkovskii, Davydov (CR8) 1982 Agoshkov, Ambrosi, Pennati, Quarteroni, Saleri (CR1) 1993; 11 Kofanov, Liseikin, Rychkov (CR11) 2012; 52 Fernandez-Nieto, Marin, Monnier (CR5) 2010; 39 De Leffe, Le Touze, Alessandrini (CR9) 2010; 48 Liseikin, Rychkov, Kofanov (CR14) 2011 Liseikin, Rychkov, Kofanov (CR13) 2011; 230 Liseikin (CR12) 2010 J-S Lai (9948_CR4) 2010; 62 E D Fernandez-Nieto (9948_CR5) 2010; 39 V A Garanzha (9948_CR17) 2000; 40 N T Danaev (9948_CR15) 1980 O M Belotserkovskii (9948_CR8) 1982 A Mohammadian (9948_CR3) 2007; 31 K Kashiyama (9948_CR2) 1999; 23 A M Winslow (9948_CR16) 1981 V L Agoshkov (9948_CR1) 1993; 11 V D Liseikin (9948_CR14) 2011 A V Kofanov (9948_CR10) 2013; 53 S S Khrapov (9948_CR7) 2011; 12 G Oger (9948_CR6) 2006; 213 V D Liseikin (9948_CR12) 2010 A V Kofanov (9948_CR11) 2012; 52 V D Liseikin (9948_CR13) 2011; 230 M Leffe De (9948_CR9) 2010; 48 |
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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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