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A stable meshfree method for fully coupled flow-deformation analysis of saturated porous media

机译:一种稳定的无网格方法,用于饱和多孔介质的全耦合流-变形分析

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摘要

A fully coupled meshfree algorithm is proposed for numerical analysis of Biot's formulation. Spatial discretization of the governing equations is presented using the Radial Point Interpolation Method (RPIM). Temporal discretization is achieved based on a novel three-point approximation technique with a variable time step, which has second order accuracy and avoids spurious ripple effects observed in the conventional two-point Crank Nicolson technique. Application of the model is demonstrated using several numerical examples with analytical or semi-analytical solutions. It is shown that the model proposed is effective in simulating the coupled flow deformation behaviour in fluid saturated porous media with good accuracy and stability irrespective of the magnitude of the time step adopted.
机译:提出了一种完全耦合的无网格算法,用于对Biot公式进行数值分析。使用径向点插值方法(RPIM)提出了控制方程的空间离散化。时间离散化是基于具有可变时间步长的新型三点逼近技术实现的,该技术具有二阶精度,并且避免了传统的两点Crank Nicolson技术中观察到的伪纹波效应。通过使用带有解析或半解析解的几个数值示例来演示该模型的应用。结果表明,所提出的模型可以有效地模拟流体饱和多孔介质中的耦合流动变形行为,并且具有良好的精度和稳定性,而与所采用的时间步长无关。

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