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A pore-scale method for hydromechanical coupling in deformable granular media

机译:变形介质中水力耦合的孔隙尺度方法

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A pore-scale numerical method for simulating multiphase granular media is described, in which the solid skeleton is represented by a dense random packing of poly-disperse spherical particles and the pore space is discretized as a network of pores. The underlying idea is to build an efficient method for analyzing the hydro-mechanical behavior of such materials. We design the model specifically for simulating the quasi-static primary drainage, using a criterion for the displacements of the invading fluid and expressions of the forces exerted on the solid grains by fluid's pressure and surface tension. The model can reproduce some features of drainage, including fluid phase entrapment and capillary fingering. We illustrate the method by simulated primary drainage in oedometer conditions, highlighting the deformation induced by partial saturation. (C) 2017 Elsevier B.V. All rights reserved.
机译:描述了一种模拟多相颗粒介质的孔尺度数值方法,其中固体骨架由多分散球形颗粒的致密无规堆积表示,孔空间离散为孔网络。基本思想是建立一种有效的方法来分析此类材料的水力力学行为。我们使用侵入流体的位移以及流体的压力和表面张力施加在固体颗粒上的力的表达式的标准,专门设计了用于模拟准静态一次排水的模型。该模型可以再现排水的一些特征,包括液相截留和毛细管指法。我们通过在里程表条件下模拟一次排水来说明该方法,重点介绍了部分饱和引起的变形。 (C)2017 Elsevier B.V.保留所有权利。

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