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  4. Generation of 3D Spatially Variable Anisotropy for Groundwater Flow Simulations
 
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Generation of 3D Spatially Variable Anisotropy for Groundwater Flow Simulations

Auteur(s)
Borghi, Andrea 
Centre d'hydrogéologie et de géothermie 
Renard, Philippe 
Centre d'hydrogéologie et de géothermie 
Courrioux, Gabriel
Date de parution
2015
In
Groundwater, Wiley, 2015/53/6/955-958
Résumé
Sedimentary units generally present anisotropy in their hydraulic properties, with higher hydraulic conductivity along bedding planes, rather than perpendicular to them. This common property leads to a modeling challenge if the sedimentary structure is folded. In this paper, we show that the gradient of the geological potential used by implicit geological modeling techniques can be used to compute full hydraulic conductivity tensors varying in space according to the geological orientation. For that purpose, the gradient of the potential, a vector normal to the bedding, is used to construct a rotation matrix that allows the estimation of the 3D hydraulic conductivity tensor in a single matrix operation. A synthetic 2D cross section example is used to illustrate the method and show that flow simulations performed in such a folded environment are highly influenced by this rotating anisotropy. When using the proposed method, the streamlines follow very closely the folded formation. This is not the case with an isotropic model.
Identifiants
https://libra.unine.ch/handle/123456789/3852
_
10.1111/gwat.12295
Type de publication
journal article
Dossier(s) à télécharger
 main article: Borghi_A-Generation_of_3D_spatially-20180130.pdf (1.46 MB)
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