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Three-dimensional non-linear finite element analysis of laterally loaded piles in clay.

机译:粘土中侧向受力桩的三维非线性有限元分析。

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摘要

Behavior of laterally loaded single piles and pile groups in fine grained soils are investigated using a non-linear finite element methodology. The purpose is to gather behavioral information that would help improve our knowledge of pile behavior and enhance the applicability of some existing methods of analysis.; A three-dimensional non-linear finite element program, PILE3D, has been developed. An anisotropically hardening bounding surface plasticity model is used to model soil behavior. Behavior of soil-pile interface is modeled using thin isoparametric elements. Various geotechnical loading and boundary conditions including drained and undrained loading, water table, in-situ stresses, preconsolidation and formation of gap at the soil-pile interface, have been implemented.; Two full-scale laterally loaded pile tests are analyzed using two- and three-dimensional idealizations and results are compared with observed pile behavior. Good agreement is obtained between measured and computed bending moment, soil resistance and lateral deflection along the length of the pile, load-deflection response at the pile-head and p-y curves at different depths.; Influence on the behavior of the pile-soil system of flexural rigidity and diameter of the pile, shear strength, lateral pressure coefficient, friction angle and preconsolidation of the soil, and gap formation behind the pile at the soil-pile interface are investigated. Results are compared with some existing criteria for the determination of p-y curves.; Effect of interaction between the individual piles in a group is studied using three different configurations: (i) an {dollar}infty{dollar} x 1 group, (ii) a 1 x {dollar}infty{dollar} group and (iii) an {dollar}infty{dollar} x {dollar}infty{dollar} group. Influence of spacing between the piles in a group is investigated. Results are compared with some existing theoretical solutions and with results of full-scale and model-scale pile load tests. Interactions factors are developed to adjust single pile p-y curves to account for group interaction.
机译:使用非线性有限元方法研究了细粒土中侧向加载的单桩和桩群的行为。目的是收集行为信息,这将有助于提高我们对桩行为的了解并增强某些现有分析方法的适用性。已经开发了三维非线性有限元程序PILE3D。各向异性硬化边界表面可塑性模型用于模拟土壤行为。使用薄等参单元对土-桩界面的行为进行建模。已实现了各种岩土荷载和边界条件,包括排水和不排水荷载,地下水位,原地应力,预固结和在土-桩界面处形成缝隙。使用二维和三维理想化方法分析了两个完整的横向荷载桩试验,并将结果与​​观察到的桩行为进行了比较。在测量和计算的弯矩,沿桩长的土抗力和侧向挠度,桩头处的荷载-挠度响应和不同深度的p-y曲线之间取得了良好的一致性。研究了抗弯刚度和桩直径,抗剪强度,侧向压力系数,土壤的摩擦角和预固结以及桩-土界面处桩后空隙的形成对桩-土系统行为的影响。将结果与确定p-y曲线的一些现有标准进行比较。使用三种不同的配置研究了一组中各个桩之间的相互作用的影响:(i){$} infy {dollar} x 1组,(ii)1 x {dollar} infty {dollar}组,以及(iii) {dollar} infty {dollar} x {dollar} infty {dollar}组。研究了一组桩之间的间距的影响。将结果与一些现有的理论解决方案以及全面和模型规模的桩载荷测试结果进行比较。开发了相互作用因子以调整单桩p-y曲线以说明组相互作用。

著录项

  • 作者

    Bhowmik, Sujit Kumar.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Civil.; Geotechnology.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;地质学;
  • 关键词

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