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Nonlinear solutions for laterally loaded piles

机译:横向装载桩的非线性解决方案

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摘要

A nonlinear analysis framework for laterally loaded piles is presented that is as accurate as equivalent threedimensional nonlinear finite element analysis, but computationally one order of magnitude faster. The nonlinear behavior of sands and clays are account for by using hyperbolic modulus-reduction relationships. These nonlinear-elastic constitutive models are used to calculate the reduced modulus at different points in the soil based on the soil strains induced by lateral pile displacement. The reduced modulus at different points in the soil domain are spatially integrated to calculate the reduced soil resistance parameters associated with the differential equation governing the lateral pile displacement. The differential equations governing the lateral displacements of pile and soil under equilibrium are obtained by applying the principle of virtual work to a continuum-based pile-soil system. These coupled differential equations are solved using the one-dimensional finite difference method following an iterative algorithm. The accuracy of the analysis is verified against equivalent three-dimensional nonlinear finite element analysis, and the validity of the analysis in predicting the field response is checked by comparisons with multiple pile load test results. Parametric studies are performed to gain insights into the lateral pile response.
机译:本文提出了一种横向荷载桩的非线性分析框架,该框架与等效三维非线性有限元分析一样精确,但计算速度快一个数量级。砂土和粘土的非线性行为通过双曲线模量折减关系来解释。这些非线性弹性本构模型用于根据桩侧位移引起的土壤应变计算土壤中不同点的折减模量。将土壤域中不同点的折减模量进行空间积分,以计算与控制桩横向位移的微分方程相关的折减土壤阻力参数。将虚功原理应用于基于连续介质的桩土系统,得到了平衡状态下桩土横向位移的微分方程。这些耦合微分方程采用一维有限差分法进行迭代求解。通过等效三维非线性有限元分析验证了分析的准确性,并通过与多桩荷载试验结果的比较,验证了分析在预测现场响应方面的有效性。进行参数研究,以了解桩的横向响应。

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