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Seismic response of pile foundations in liquefiable soil: parametric study

机译:可液化土壤中桩基的地震反应:参数研究

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摘要

The performance of pile foundations in liquefiable soil subjected to earthquake loading is a very complex process. The strength and stiffness of the soil decrease due to the increase in pore pressure. The pile can be seriously destroyed by the soil liquefaction during strong earthquakes. This paper presents the response of vertical piles in liquefiable soil under seismic loads. A finite difference model, known as fast Lagrangian analysis of continua, is used to study the pile behavior considering a nonlinear constitutive model for soil liquefaction and pile-soil interaction. The maximum lateral displacement and maximum pile bending moment are obtained for different pile diameters, earthquake predominant frequencies, Arias intensities, and peak accelerations. It is found that the maximum lateral displacement and the maximum pile bending moment increase when the predominant earthquake frequency value decreases for a given peak acceleration value.
机译:在地震荷载作用下的液化土壤中桩基的性能是一个非常复杂的过程。土壤的强度和刚度由于孔隙压力的增加而降低。在强地震中,土壤液化会严重破坏桩。本文提出了地震作用下液化土壤中竖向桩的响应。考虑土壤液化和桩-土相互作用的非线性本构模型,使用有限差分模型(即连续性的快速拉格朗日分析)来研究桩的行为。对于不同的桩直径,地震主导频率,阿里亚斯强度和峰值加速度,可以获得最大横向位移和最大桩弯矩。发现在给定的峰值加速度值下,主要地震频率值减小时,最大横向位移和最大桩弯矩增加。

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