GeoClaw

Depth-averaged fluid dynamics for modeling geophysical flows and wave propagation

Shallow-water modelTsunamistorm wave

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Initial contribute: 2021-09-06

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New York University
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Classification(s)

Application-focused categoriesNatural-perspectiveLand regions
Application-focused categoriesNatural-perspectiveOcean regions
Application-focused categoriesIntegrated-perspectiveGlobal scale
Application-focused categoriesIntegrated-perspectiveRegional scale

Detailed Description

English {{currentDetailLanguage}} English

Quoted from: http://export.arxiv.org/abs/1008.0455

  Many geophysical flow or wave propagation problems can be modeled with two-dimensional depth-averaged equations, of which the shallow water equations are the simplest example. We describe the GeoClaw software that has been designed to solve problems of this nature, consisting of open source Fortran programs together with Python tools for the user interface and flow visualization. This software uses high-resolution shock-capturing finite volume methods on logically rectangular grids, including latitude--longitude grids on the sphere. Dry states are handled automatically to model inundation. The code incorporates adaptive mesh refinement to allow the efficient solution of large-scale geophysical problems. Examples are given illustrating its use for modeling tsunamis, dam break problems, and storm surge. Documentation and download information is available at www.clawpack.org/geoclaw

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Marsha Berger (2021). GeoClaw, Model Item, OpenGMS, https://geomodeling.njnu.edu.cn/modelItem/da16deaf-1f24-4c37-80ef-013d60020c0a
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Contributor(s)

Initial contribute : 2021-09-06

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Authorship

:  
New York University
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History

Last modifier
HaoCheng Wang
Last modify time
2021-09-18
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