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A numerical model for nonlinear large deformation dynamic analysis of unsaturated porous media including hydraulic hysteresis

机译:含水力滞后的非饱和多孔介质非线性大变形动力分析数值模型

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A numerical model based on the theory of mixtures is proposed for the nonlinear dynamic analysis of flow and deformation in unsaturated porous media. Starting from the conservation laws, the governing differential equations and the finite element incremental approximations suitable for nonlinear large deformation static and dynamic analyses are derived within the updated Lagrangian framework. The coupling between solid and fluid phases is enforced according to the effective stress principle taking suction dependency of the effective stress parameter into account. The effect of hydraulic hysteresis on the effective stress parameter and soil water characteristic curve is also taken into account. The application of the approach is demonstrated through numerical analyses of several fundamental nonlinear problems and the results are compared to the relevant analytical solutions. The effects of suction, large deformations and hydraulic hysteresis on static and dynamic response of unsaturated soils are particularly emphasized. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种基于混合理论的数值模型,用于非饱和多孔介质中流动和变形的非线性动力学分析。从守恒定律出发,在更新的拉格朗日框架内推导了适用于非线性大变形静态和动态分析的控制微分方程和有限元增量近似。考虑有效应力参数的吸力依赖性,根据有效应力原理加强固相和流体相之间的耦合。还考虑了水力滞后对有效应力参数和土壤水分特征曲线的影响。通过对几个基本非线性问题的数值分析证明了该方法的应用,并将结果与​​相关的解析解进行了比较。特别强调了吸力,大变形和水力滞后对非饱和土静,动力响应的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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