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A semi-implicit discrete-continuum coupling method for porous media based on the effective stress principle at finite strain

机译:基于有限应变有效应力原理的多孔介质半隐式离散连续谱耦合方法

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A finite strain multiscale hydro-mechanical model is established via an extended Hill-Mandel condition for two-phase porous media. By assuming that the effective stress principle holds at unit cell scale, we established a micro-to-macro transition that links the micromechanical responses at grain scale to the macroscopic effective stress responses, while modeling the fluid phase only at the macroscopic continuum level. We propose a dual-scale semi-implicit scheme, which treats macroscopic responses implicitly and microscopic responses explicitly. The dual-scale model is shown to have good convergence rate, and is stable and robust. By inferring effective stress measure and poro-plasticity parameters, such as porosity, Biot's coefficient and Biot's modulus from micro-scale simulations, the multiscale model is able to predict effective poro-elasto-plastic responses without introducing additional phenomenological laws. The performance of the proposed framework is demonstrated via a collection of representative numerical examples. Fabric tensors of the representative elementary volumes are computed and analyzed via the anisotropic critical state theory when strain localization occurs. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过扩展的Hill-Mandel条件建立了两相多孔介质的有限应变多尺度流体力学模型。通过假设有效应力原理在单位晶格尺度上成立,我们建立了一个微观到宏观的过渡过程,该过程将晶粒尺度上的微机械响应与宏观有效应力响应联系起来,而仅在宏观连续体水平上对流体相进行建模。我们提出了一种双尺度半隐式方案,该方案隐式地处理宏观响应,而显式地处理微观响应。双尺度模型显示出具有良好的收敛速度,并且稳定且鲁棒。通过从微观模拟中推断出有效的应力测量值和孔隙塑性参数(例如孔隙度,比奥系数和比奥模量),多尺度模型能够预测有效的孔隙弹塑性响应,而无需引入其他现象学定律。通过一系列具有代表性的数值示例来证明所提出框架的性能。当应变局部化时,通过各向异性临界状态理论计算并分析代表性基本体积的织物张量。 (C)2016 Elsevier B.V.保留所有权利。

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