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[[ Model concepts | Model types for flow and transport in fractured aquifers]] <br> | [[ Model concepts | Model types for flow and transport in fractured aquifers]] <br> | ||
[[ Modeling tools | Modeling tools and useful helpers]] <br> | [[ Modeling tools | Modeling tools and useful helpers]] <br> | ||
− | [[ Model setup | Steps to setup an advanced model for fracture flow and transport in a limestone aquifer]] [[ | + | [[ Model setup | Steps to setup an advanced model for fracture flow and transport in a limestone aquifer]] [[ Example: Akacievej |(example: Akacievej, Hedehusene) ]]<br> |
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[[ Model output | Comparison of model concepts and recommendations for modeling fractured limestone aquifers]] | [[ Model output | Comparison of model concepts and recommendations for modeling fractured limestone aquifers]] |
Revision as of 08:23, 4 July 2019
Wiki: Investigation of contaminant transport in fractured limestone aquifers
This is a Wiki about the fate of contaminants in fractured limestone aquifers. It is part of a collaboration project between DTU Environment and the Capital Region of Denmark.
The content is subject to changes and the Wiki is being further extended.
Authors: Klaus Mosthaf, Annika S. Fjordbøge, Rasmus Thalund-Hansen, Mette M. Broholm, Poul L. Bjerg, Philip J. Binning (DTU Environment )
Introduction, geology and physical processes
Field methods and conceptual model development
Modeling contaminant transport in limestone
Model types for flow and transport in fractured aquifers
Modeling tools and useful helpers
Steps to setup an advanced model for fracture flow and transport in a limestone aquifer (example: Akacievej, Hedehusene)
Comparison of model concepts and recommendations for modeling fractured limestone aquifers