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Coupled effective stress analysis of insertion problems in geotechnics with the Particle Finite Element Method

机译:用粒子有限元法对岩土工程中插入问题的有效应力分析

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This paper describes a computational framework for the numerical analysis of quasi-static soil-structure insertion problems in water saturated media. The Particle Finite Element Method is used to solve the linear momentum and mass balance equations at large strains. Solid-fluid interaction is described by a simplified Biot formulation using pore pressure and skeleton displacements as basic field variables. The robustness and accuracy of the proposal is numerically demonstrated presenting results from two benchmark examples. The first one addresses the consolidation of a circular footing on a poroelastic soil. The second one is a parametric analysis of the cone penetration test (CPTu) in a material described by a Cam-clay hyperelastic model, in which the influence of permeability and contact roughness on test results is assessed.
机译:本文为水饱和介质中准静态土-结构插入问题的数值分析提供了一种计算框架。粒子有限元法用于求解大应变下的线性动量和质量平衡方程。通过使用孔压和骨架位移作为基本场变量的简化Biot公式描述了固液相互作用。数值上显示了该提案的鲁棒性和准确性,并给出了两个基准示例的结果。第一个解决方法是在多孔弹性土壤上加固圆形基础。第二个是对由Cam-clay超弹性模型描述的材料中的锥入度测试(CPTu)的参数分析,其中评估了渗透率和接触粗糙度对测试结果的影响。

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