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Numerical study on undrained cone penetration in structured soil using G-PFEM

机译:G-PFEM结构土壤中未染色锥体渗透的数值研究

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This paper presents a model for the numerical simulation of cone penetration in structured soil under undrained conditions based on the Particle Finite Element Method. An extended version of the Clay and Sand Model (CASM), allowing microstructural bonding and its degradation to be taken into account, was implemented into the application G-PFEM and compared to the analytical solution for undrained spherical cavity expansion. A robust model for cone penetration is obtained using a nonlocal stress-integration combined with the IMPLEX integration scheme. A parametric study on the shape of the yield surface ? which is adaptable for the CASM ? and the degree of initial bonding, as well as the rate of destructuration, was conducted to investigate the influence on the obtained normalized parameters Qt, BQ, U, and the cone factors Nkt, N?u, Nke used for the determination of the undrained shear strength. It was found that the highest cone factors, leading to conservative estimations of the peak undrained shear strength, are obtained for unbonded material. Both, the shear strength and the tip resistance increase due to soil structure, however, Nkt and Nke are not significantly influenced as long as no destructuration takes place during penetration.
机译:本文介绍了基于颗粒有限元法在不推断的情况下结构土壤锥体渗透数值模拟的模型。粘土和砂模型(CASM)的扩展版本,允许考虑微观结构粘合及其降解,以应用于施用G-PFEM,并与未润滑的球形腔膨胀的分析解决方案相比。使用与Implex积分方案组合的非识别应力集成来获得用于锥形渗透的鲁棒模型。参数研究屈服表面的形状?哪个适用于casm?进行初始键合的程度以及破坏性率,以研究对所得归一化参数QT,BQ,U和锥形因子NKT,N 2的影响,用于确定未经介绍的剪切力量。结果发现,对于未粘附的材料,获得了导致峰值不介绍剪切强度的保守估计的最高锥形因子。然而,由于土壤结构导致的剪切强度和尖端电阻增加并没有显着影响,只要在渗透过程中没有破坏。

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