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Pile-soil-pile interaction in pile groups under lateral loading.

机译:侧向荷载下群桩中的土-土-桩相互作用。

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摘要

This paper describes the results of a numerical analysis of single pile and pile groups subjected to monotonous lateral loading using ABAQUS finite element program. The variables investigated in this study includes embedded pile cap, pile diameter, pile length, and pile spacing. The 1 x 3 pile group was selected to investigate the lateral resistance of the group and distribution of the resistance among the piles distribution and the influence of the trailing piles on the lateral resistance of the leading pile. The piles and caps were concrete and the soil followed Cam-clay constitutive model.; The p-y method has been widely used to design the lateral capacity of the piles. To accommodate the contribution of the pile cap on the lateral capacity of the pile, methods based on the soil lateral modulus of subgrade reaction or the Rankine passive resistance have been used in the design. For lateral capacity of pile group, each pile in the group is given a multiplying factor. The factor is the ratio between the lateral capacity of a pile in the group to the capacity of a single pile. A factor of less than 1.0 has been used for the design of individual piles in the group.; The results of this study show that for a single pile, the present of the cap not only affects the lateral capacity of the pile but the location of the point of application of the load also affects the response. When the cap is pushed laterally, vertical stress below the base of the front part of the cap is induced, increasing the confining pressure of soil in front of the pile, and this results in the increase of the lateral capacity. When the lateral load is applied on the front of the cap, the lateral capacity drops due to reduction in the induced vertical stress in the front of the pile.; For the piles in the group, the results show that the leading pile has a higher resistance than the trailing piles as expected. However, this study also shows that the leading pile has a higher lateral capacity than the capacity of the single pile. This indicates that the multiplying factor of less than 1.0 as usually used for the leading pile is conservative. Further observation on soil elements around the side of the leading pile show higher horizontal stress than the soil elements on the trailing piles at same location.; The general trend of this phenomenon is similar in short and long piles. In the group with larger pile spacing, the difference in the capacity between the leading pile and the trailing pile decreases.
机译:本文描述了使用ABAQUS有限元程序对单桩和单桩群进行单调横向荷载的数值分析结果。在这项研究中调查的变量包括嵌入式桩帽,桩直径,桩长和桩间距。选择1 x 3桩组来研究该组的侧向阻力,桩之间的阻力分布以及尾随桩对前桩的侧向阻力的影响。桩和帽是混凝土,土壤遵循Cam-Clay本构模型。 p-y方法已被广泛用于设计桩的侧向承载力。为了适应桩帽对桩侧向承载力的影响,设计中采用了基于路基土侧向反应模量或兰金被动抗力的方法。对于桩组的侧向承载力,组中的每个桩都被赋予一个乘数。该因素是该组中桩的侧向承载力与单个桩的承载力之比。小于1.0的系数已用于组中各个桩的设计。这项研究的结果表明,对于单桩,桩帽的存在不仅影响桩的侧向承载力,而且荷载施加点的位置也影响响应。当侧向推动顶盖时,会在顶盖的前部底部下方产生垂直应力,从而增加桩前的土壤围压,从而导致侧向承载力的增加。当侧向载荷施加在顶盖的前部时,侧向承载力会由于桩前部引起的垂直应力的减小而降低。对于该组中的桩,结果表明,前桩比后桩具有更高的抵抗力。但是,这项研究还表明,前导桩的侧向承载力要比单桩的承载力高。这表明通常用于引导桩的乘积系数小于1.0是保守的。对前桩侧土元素的进一步观察显示,水平应力要比相同位置的后桩土元素更高。这种现象的普遍趋势在短桩和长桩中相似。在桩间距较大的组中,前桩和后桩的承载力之差减小。

著录项

  • 作者

    Ahn, Kwangkuk.;

  • 作者单位

    Illinois Institute of Technology.;

  • 授予单位 Illinois Institute of Technology.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 273 p.
  • 总页数 273
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:44:51

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