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Shaking table scale model tests of nonlinear soil-pile-superstructure interaction in soft clay.

机译:软土中土-桩-上部结构非线性相互作用的振动台尺度模型试验。

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摘要

A significant number of cases of damage to piles and pile-supported structures during earthquakes have been observed, but few instrumented records of the response and performance of such structures during earthquakes have been obtained. To expand the database of pile performance during strong shaking, a series of scale model shaking table tests of model piles in soft clay was performed. This research effort had the goals of providing insight into a variety of soil-pile-supestructure interaction (SSPSI) topics, and generating a data set with which to calibrate advanced SSPSI analysis tools being developed at U.C. Berkeley in a parallel effort.;The single piles were seen to respond with components of inertial and kinematic interaction, with the inertial components producing upper bound bending moments. The response of pile groups was highly frequency dependent, which calls into question the applicability of applying pseudo-static analyses to such problems. Pile cap and free field motion variations illustrated wave scattering effects and the necessity of developing modified foundation input motions for substructuring analyses. Moderate effects of pile cap embedment were observed, particularly in contributing to pile group rocking stiffness.;The influences of two-directional shaking were seen to be minimal, as structural inertial forces tended to resolve the motion to a strong axis for the simple single degree of freedom models tested. For single piles, full perimeter soil resistance was not engaged, as the piles preferentially followed gaps developed in previous cycles.;Estimates of pile head lateral stiffness derived from a suite of pile head loading tests differed over a wide range, and were a function of loading level and consequent soil-pile nonlinearity. The methods examined for computing dynamic stiffness from elastic theory provided unrealistically high estimates of stiffness for the model tests. Appropriately selected secant stiffness values from the static lateral load tests provided more realistic descriptions of the observed soil-pile dynamic response for moderate levels of shaking. ATC-32 chart solutions provided marginally acceptable lower bound pile head stiffness estimates for very strong shaking events. (Abstract shortened by UMI.)
机译:已经观察到了很多在地震中损坏桩和桩支撑结构的情况,但很少有仪器记录到这种结构在地震中的响应和性能。为了扩展强震中桩性能的数据库,进行了一系列在软土中模型桩的比例模型振动台试验。这项研究的目的是提供对各种土壤-桩-超结构相互作用(SSPSI)主题的洞察力,并生成一个数据集,用于校准在美国开发的高级SSPSI分析工具。伯克利(Berkeley)在平行努力中。看到单个桩具有惯性和运动学相互作用的分量,而惯性分量产生上限弯曲力矩。桩组的响应高度依赖于频率,这使对这些问题应用伪静态分析的适用性产生了疑问。桩帽和自由场的运动变化说明了波散射效应以及为基础分析开发改进的地基输入运动的必要性。观察到了桩帽埋入的适度影响,特别是在有助于桩群摇摆刚度方面。双向振动的影响被认为是最小的,因为结构惯性力倾向于将运动分解为简单单向的强轴自由模型测试。对于单桩,由于桩优先遵循先前周期中产生的间隙,因此未考虑全周长的土壤阻力;;从一系列桩头载荷测试得出的桩头横向刚度估算值在很大范围内有所不同,并且是荷载水平和随之而来的土桩非线性。根据弹性理论计算动态刚度的方法为模型测试提供了不切实际的高刚度估算。从静态侧向载荷测试中适当选择的割线刚度值提供了对中等水平振动时观察到的土桩动力响应的更实际描述。 ATC-32图表解决方案为非常强烈的震动事件提供了勉强可以接受的下限桩头刚度估算。 (摘要由UMI缩短。)

著录项

  • 作者

    Meymand, Philip James.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Applied Mechanics.;Engineering Civil.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 462 p.
  • 总页数 462
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用力学;环境污染及其防治;建筑科学;
  • 关键词

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