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Nonlinear analysis of laterally loaded rigid piles in cohesionless soil

机译:无粘性土中侧向荷载性刚性桩的非线性分析

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摘要

In this paper, a method is developed for nonlinear analysis of laterally loaded rigid piles in cohesionless soil. The method assumes that both the ultimate soil resistance and the modulus of horizontal subgrade reaction increase linearly with depth. By considering the force and moment equilibrium, the system equations are derived for a rigid pile under a lateral eccentric load. An iteration scheme containing three main steps is then proposed to solve the system equations to obtain the response of the pile. To determine the ultimate soil resistance and the modulus of horizontal subgrade reaction required in the analysis, related expressions are selected by reviewing and assessing the existing methods. The degradation of the modulus of horizontal subgrade reaction with pile displacement at ground surface is also considered. The developed method is validated by comparing its results with those of centrifugal tests and three-dimensional finite element analysis. Applications of the developed method to laboratory model and field test piles also show good agreement between the predictions and the experimental results.
机译:本文提出了一种对无粘性土中侧向荷载的刚性桩进行非线性分析的方法。该方法假定极限土抗性和水平路基反应模量均随深度线性增加。通过考虑力和力矩的平衡,得出了偏心荷载作用下刚性桩的系统方程。然后提出了一个包含三个主要步骤的迭代方案来求解系统方程以获得桩的响应。为了确定分析中所需的极限土壤抗力和水平路基反应的模量,可通过回顾和评估现有方法来选择相关表达式。还考虑了水平路基反应模量随地表位移而降低。通过将其结果与离心测试和三维有限元分析的结果进行比较,验证了该方法的有效性。将该方法应用于实验室模型和现场试验桩也表明预测结果与实验结果吻合良好。

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