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Homogenization based two-scale modelling of ionic transport in fluid saturated deformable porous media

机译:基于均质化的流体饱和可变形多孔介质离子输送的两尺度建模

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The paper deals with the homogenization and numerical modelling of deformable porous media saturated by two-component electrolytes. The model relevant to the microscopic scale describes steady states of the medium while reflecting essential physical phenomena, namely electrochemical interactions in a dilute Newtonian solvent under assumptions of a small external electrostatic field and slow flow. The homogenization is applied to a linearized micro-model, whereby the thermodynamic equilibrium represents the reference state. Due to the dimensional analysis, scaling of the viscosity and electric permittivity is introduced, so that the limit model retains the characteristic length associated with the pore size and the electric double layer thickness. The homogenized model consists of two weakly coupled parts: the steady flow of the electrolyte can be described in terms of a global pressure and streaming potentials of the two ions, independently of the solid phase deformations which are computed afterwards for the fluid stress acting on pore walls. The two-scale model has been implemented in the Sfepy finite element software. The numerical results show dependence of the homogenized coefficients on the microstructure porosity. By virtue of the corrector result of the homogenization, microscopic responses in a local representative cell can be reconstructed from the macroscopic solutions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文涉及双组分电解质饱和可变形多孔介质的均质和数值模型。与微观规模相关的模型描述了培养基的稳定状态,同时反映了基本物理现象,即在小外静电场的假设下稀释牛顿溶剂中的电化学相互作用。均质化应用于线性化的微型模型,由此热力学平衡表示参考状态。由于尺寸分析,引入了粘度和电渗透的缩放,使得极限模型保持与孔径和电双层厚度相关的特征长度。均匀化模型由两个弱耦合部件组成:电解质的稳定流动可以根据两个离子的全球压力和流电位来描述,其独立于用于在孔上作用的流体胁迫之后计算的固相变形。墙壁。双级模型已在SFepy有限元软件中实现。数值结果显示均匀化系数对微结构孔隙率的依赖性。借助于均质化的校正结果,可以从宏观溶液重建局部代表性细胞中的微观反应。 (c)2019 Elsevier Ltd.保留所有权利。

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