A finite element method for modeling coupled flow and deformation in porous fractured media |
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Authors: | Ahmad Pouya |
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Affiliation: | Laboratoire Navier (ENPC/IFSTTAR/CNRS), IFSTTAR, Université Paris‐Est, Paris, France |
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Abstract: | Modeling the flow in highly fractured porous media by finite element method (FEM) has met two difficulties: mesh generation for fractured domains and a rigorous formulation of the flow problem accounting for fracture/matrix, fracture/fracture, and fracture/boundary fluid mass exchanges. Based on the recent theoretical progress for mass balance conditions in multifractured porous bodies, the governing equations for coupled flow and deformation in these bodies are first established in this paper. A weak formulation for this problem is then established allowing to build a FEM. Taking benefit from recent development of mesh‐generating tools for fractured media, this weak formulation has been implemented in a numerical code and applied to some typical problems of hydromechanical coupling in fractured porous media. It is shown that in this way, the FEM that has proved its efficiency to model hydromechanical phenomena in porous media is extended with all its performances (calculation time, couplings, and nonlinearities) to fractured porous media. Copyright © 2015 John Wiley & Sons, Ltd. |
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Keywords: | fluid flow fractures porous media numerical modeling finite element method hydromechanical coupling |
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