Finite volume method for long wave runup: 1D model
A numerical model using the 1D shallow water equations was developed for the simulation of long wave propagation and runup. The developed model is based on the Finite Volume Method (FVM) with an application of Godunov - type scheme of second order of accuracy. The model uses the HLL approximate R...
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oai:112.137.131.14:11126-45672018-07-14T08:26:50Z Finite volume method for long wave runup: 1D model Phung, Dang Hieu Finite Volume Method Shallow Water Model Wave Runup A numerical model using the 1D shallow water equations was developed for the simulation of long wave propagation and runup. The developed model is based on the Finite Volume Method (FVM) with an application of Godunov - type scheme of second order of accuracy. The model uses the HLL approximate Riemann solver for the determination of numerical fluxes at cell interfaces. The model was applied to the simulation of long wave propagation and runup on a plane beach and simulated results were compared with the published experimental data. The comparison shows that the present model has a powerof simulation of long wave propagation and runup on beaches. 2014-03-18T06:16:02Z 2015-08-14T08:55:25Z 2014-03-18T06:16:02Z 2015-08-14T08:55:25Z 2008 Article Phung, Dang Hieu. (2008). Finite volume method for long wave runup: 1D model. VNU Journal of Science, Earth Sciences 24 (2008), p. 10-15 http://repository.vnu.edu.vn/handle/11126/4567 en application/pdf VNU |
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Finite Volume Method Shallow Water Model Wave Runup |
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Finite Volume Method Shallow Water Model Wave Runup Phung, Dang Hieu Finite volume method for long wave runup: 1D model |
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A numerical model using the 1D shallow water equations was developed for the
simulation of long wave propagation and runup. The developed model is based on the Finite Volume Method (FVM) with an application of Godunov - type scheme of second order of accuracy. The model uses the HLL approximate Riemann solver for the determination of numerical fluxes at cell interfaces. The model was applied to the simulation of long wave propagation and runup on a plane beach and simulated results were compared with the published experimental data. The comparison shows that the present model has a powerof simulation of long wave propagation and
runup on beaches. |
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Article |
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Phung, Dang Hieu |
author_facet |
Phung, Dang Hieu |
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Phung, Dang Hieu |
title |
Finite volume method for long wave runup: 1D model |
title_short |
Finite volume method for long wave runup: 1D model |
title_full |
Finite volume method for long wave runup: 1D model |
title_fullStr |
Finite volume method for long wave runup: 1D model |
title_full_unstemmed |
Finite volume method for long wave runup: 1D model |
title_sort |
finite volume method for long wave runup: 1d model |
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VNU |
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2014 |
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http://repository.vnu.edu.vn/handle/11126/4567 |
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