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Arbitrary Lagrangian Eulerian based finite element analysis of cone penetration in soft clay

机译:基于任意拉格朗日欧拉方程的圆锥体在软黏土中的有限元分析

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This paper presents a numerical model for the analysis of cone penetration in soft clay based on the finite element method. The constitutive behaviour of the soil is modelled by modifying an elastic, perfectly-plastic soil model obeying Von-Mises yield criterion to take into account the strain-softening, rate dependent behaviour of soft clay. Since this is a problem involving large soil deformations, the analysis is carried out using an Arbitrary Lagrangian Eulerian method where the quality of the mesh is preserved during penetration. The variation of cone resistance is examined with various parameters such as rigidity index of the soil, in situ stress anisotropy and roughness at the cone-soil interface, which influence the penetration resistance of the cone. A theoretical correlation has been developed incorporating these parameters and the results have been compared with previous correlations based on the cavity expansion theory, finite element method and strain path method. With the increase in strain-softening, relative brittleness of the soil increases and the penetration resistance is significantly reduced. With the rising strain-rate dependency, penetration resistance increases but this increase is independent of the degree of brittleness of the soil.
机译:本文提出了一种基于有限元方法的软土锥体渗透分析数值模型。通过修改弹性,完全塑性的土壤模型(遵循Von-Mises屈服准则)来考虑软土的应变软化,速率相关行为,可以对土壤的本构行为进行建模。由于这是涉及大土壤变形的问题,因此使用任意拉格朗日欧拉方法进行分析,该方法在渗透过程中保持了网格的质量。使用各种参数(例如土壤的刚度指数,原位应力各向异性和锥-土界面处的粗糙度)来检查锥阻力的变化,这些参数会影响锥的渗透阻力。已经开发了包含这些参数的理论相关性,并将结果与​​基于腔体扩张理论,有限元方法和应变路径方法的先前相关性进行了比较。随着应变软化的增加,土壤的相对脆性增加,并且抗穿透性显着降低。随着应变率依赖性的增加,抗渗透性增加,但是这种增加与土壤的脆性无关。

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