Difference between revisions of "Modeling tools"
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== Modeling tools == | == Modeling tools == | ||
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| + | The following list shows some selected modeling tools that can be used for the simulation of fracture flow and transport. | ||
| + | Their capabilities with respect to modeling flow and transport in fractured media are compared in the chapter [[ Comparison of capabilities ]]. | ||
=== Comsol Multiphysics === | === Comsol Multiphysics === | ||
* [https://www.comsol.dk Comsol Multiphysics] | * [https://www.comsol.dk Comsol Multiphysics] | ||
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=== FEFlow === | === FEFlow === | ||
* [http://www.mikepoweredbydhi.com/products/feflow FEFlow] | * [http://www.mikepoweredbydhi.com/products/feflow FEFlow] | ||
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=== Hydrogeosphere === | === Hydrogeosphere === | ||
* [http://www.aquanty.com/hydrogeosphere HydroGeoSphere] | * [http://www.aquanty.com/hydrogeosphere HydroGeoSphere] | ||
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| + | [[ Comparison of capabilities ]] | ||
== Useful helpers == | == Useful helpers == | ||
Revision as of 11:23, 19 April 2016
Contents
Modeling tools
The following list shows some selected modeling tools that can be used for the simulation of fracture flow and transport. Their capabilities with respect to modeling flow and transport in fractured media are compared in the chapter Comparison of capabilities .
Comsol Multiphysics
FEFlow
Hydrogeosphere
Useful helpers
Matlab model based on Christ and Goltz, 2002
Script for calculating the capture zone of wells. Based on the paper by Christ and Goltz, J. Hydrology, 2002, p. 224-244. [1].
Matlab model for capture zone calculation
Aqtesolv
Interpretation of slug tests and pump tests
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