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Multiscale modeling of a fluid saturated medium with double porosity: Relevance to the compact bone
Authors:E Rohan  S Naili  R Cimrman  T Lemaire
Institution:1. Department of Mechanics, Faculty of Applied Sciences, University of West Bohemia in Pilsen, Univerzitní 22, 30614 Plzeň, Czech Republic;2. Université Paris-Est, Laboratoire Modélisation et Simulation Multi-Échelle, MSME UMR 8208 CNRS, 61, Avenue du Général de Gaulle, 94010 Créteil Cedex, France
Abstract:In this paper, we develop a model of a homogenized fluid-saturated deformable porous medium. To account for the double porosity the Biot model is considered at the mesoscale with a scale-dependent permeability in compartments representing the second-level porosity. This model is treated by the homogenization procedure based on the asymptotic analysis of periodic “microstructure”. When passing to the limit, auxiliary microscopic problems are introduced, which provide the corrector basis functions that are needed to compute the effective material parameters. The macroscopic problem describes the deformation-induced Darcy flow in the primary porosities whereas the microflow in the double porosity is responsible for the fading memory effects via the macroscopic poro-visco-elastic constitutive law. For the homogenization procedure, we use the periodic unfolding method. We discuss also the stress and flow recovery at multiple scales characterizing the heterogeneous material. The model is proposed as a theoretical basis to describe compact bone behavior on multiple scales.
Keywords:
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