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Parallel 3-d simulations for porous media models in soil mechanics

机译:土壤力学中多孔介质模型的并行3-d模拟

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Numerical simulations in 3-d for porous media models in soil mechanics are a difficult task for the engineering modelling as well as for the numerical realization. Here, we present a general numerical scheme for the simulation of two-phase models in combination with an abstract material model via the stress response with a specialized parallel saddle point solver. Therefore, we give a brief introduction into the theoretical background of the Theory of Porous Media and constitute a two-phase model consisting of a porous solid skeleton saturated by a viscous pore-fluid. The material behaviour of the skeleton is assumed to be elasto-viscoplastic. The governing equations are transfered to a weak formulation suitable for the application of the finite element method. Introducing an abstract formulation in terms of the stress response, we define a clear interface between the assembling process and the parallel solver modules. We demonstrate the efficiency of this approach by challenging numerical experiments realized on the Linux Cluster in Chemnitz.
机译:土壤力学中多孔介质模型的3-d数值模拟对于工程建模以及数值实现都是一项艰巨的任务。在这里,我们提出了一种通用的数值方案,用于通过专门的平行鞍点求解器通过应力响应,与抽象材料模型相结合,模拟两相模型。因此,我们简要介绍了多孔介质理论的理论背景,并构建了一个由粘性固体流体饱和的多孔固体骨架组成的两相模型。假定骨架的材料行为是弹黏塑性的。控制方程式被转换为适用于有限元方法的弱公式。在应力响应方面引入了抽象的公式,我们在组装过程和并行求解器模块之间定义了清晰的接口。通过挑战在开姆尼茨Linux集群上实现的数值实验,我们证明了这种方法的效率。

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