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Dynamic behavior of pile foundations under cyclic loading in liquefiable soils

机译:液化土中循环荷载作用下桩基的动力特性

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In this paper, a fully coupled three-dimensional dynamic analysis is carried out to investigate the dynamic behavior of pile foundations in liquefied ground. A critical state bounding surface plasticity model is used to model soil skeleton, while a fully coupled (u-P) formulation is employed to analyze soil displacements and pore water pressures. Furthermore, in this study, variation of permeability coefficient during liquefaction is taken into account; the permeability coefficient is related to excess pore water pressure ratio. Results of a centrifuge test on pile foundations are used to demonstrate the capability of the model for reliable analysis of piles under dynamic loading. Then, the verified model is used for a parametric study. The parametric study is carried out by varying pile length, frequency of input motion, fixity of the pile head, thickness of the liquefying soil layer and relative density of liquefying soil layer. Three different soil profiles have been considered in this study. In general, parametric studies demonstrate that fixity of the pile head, thickness of liquefying soil layer and frequency of input motion are the most critical parameters which considerably affect piles performance in liquefied grounds.
机译:本文进行了完全耦合的三维动力分析,以研究液化地基中桩基的动力特性。临界状态边界表面可塑性模型用于模拟土壤骨架,而全耦合(u-P)公式用于分析土壤位移和孔隙水压力。此外,在这项研究中,考虑了液化过程中渗透系数的变化。渗透系数与过量孔隙水压力比有关。桩基离心试验的结果用于证明该模型在动态载荷下可靠分析桩的能力。然后,将经过验证的模型用于参数研究。通过改变桩长,输入运动的频率,桩头的固定性,液化土层的厚度和液化土层的相对密度来进行参数研究。这项研究考虑了三种不同的土壤剖面。通常,参数研究表明,桩头的固定性,液化土层的厚度和输入运动的频率是最关键的参数,这些参数在很大程度上影响了液化地基中桩的性能。

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