Model:GeoClaw: Difference between revisions
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{{Model identity2 | {{Model identity2 | ||
| | |ModelDomain=Terrestrial, Coastal | ||
|Spatial dimensions=1D, 2D | |Spatial dimensions=1D, 2D | ||
|Spatialscale=Global, | |Spatialscale=Continental, Global, Landscape-Scale, Patch-Scale, Reach-Scale, Regional-Scale, Watershed-Scale | ||
|One-line model description=Depth-averaged fluid dynamics for modeling geophysical flows and wave propagation | |One-line model description=Depth-averaged fluid dynamics for modeling geophysical flows and wave propagation | ||
|Extended model description=Originally developed for modeling tsunami generation, propagation, and inundation. Also used for storm surge modeling and overland flooding (e.g. dam break problems). Uses adaptive mesh refinement to allow much greater spatial resolutions in some regions than others, and to automatically follow dynamic evolution of waves or floods. Uses high-resolution finite volume methods that robustly handle wetting and drying. The package also includes tools for working with geophysical data including topography DEMs, earthquake source models for tsunami generation, and observed gauge data. The simulation code is in Fortran with OpenMP for shared memory parallelization, and Python for the user interface, visualization, and data tools. | |Extended model description=Originally developed for modeling tsunami generation, propagation, and inundation. Also used for storm surge modeling and overland flooding (e.g. dam break problems). Uses adaptive mesh refinement to allow much greater spatial resolutions in some regions than others, and to automatically follow dynamic evolution of waves or floods. Uses high-resolution finite volume methods that robustly handle wetting and drying. The package also includes tools for working with geophysical data including topography DEMs, earthquake source models for tsunami generation, and observed gauge data. The simulation code is in Fortran with OpenMP for shared memory parallelization, and Python for the user interface, visualization, and data tools. | ||
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|Start year development=1994 | |Start year development=1994 | ||
|Does model development still take place?=Yes | |Does model development still take place?=Yes | ||
|DevelopmentCode=Active | |||
|DevelopmentCodeYearChecked=2020 | |||
|Model availability=As code, As teaching tool | |Model availability=As code, As teaching tool | ||
|Source code availability=Through web repository | |Source code availability=Through web repository | ||
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|OpenMI compliant= | |OpenMI compliant=No but possible | ||
|IRF interface= | |IRF interface=No but possible | ||
|CMT component= | |CMT component=No but possible | ||
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== References == | == References == | ||
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== Issues == | == Issues == |
Latest revision as of 20:14, 16 September 2020
GeoClaw
This code has been community reviewed and published in the open access Journal of Open Source Software (JOSS)
Metadata
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Introduction
History
References
Nr. of publications: | 35 |
Total citations: | 993 |
h-index: | 14 |
m-quotient: | 0.93 |
Featured publication(s) | Year | Model described | Type of Reference | Citations |
---|---|---|---|---|
Berger, Marsha J.; George, David L.; LeVeque, Randall J.; Mandli, Kyle T.; 2011. The GeoClaw software for depth-averaged flows with adaptive refinement. Advances in Water Resources, 34, 1195–1206. 10.1016/j.advwatres.2011.02.016 (View/edit entry) | 2011 | GeoClaw |
Model overview | 212 |
See more publications of GeoClaw |