上海大学学报(自然科学版) ›› 2011, Vol. 17 ›› Issue (6): 779-784.doi: 10.3969/j.issn.1007-2861.2011.06.017

• 土木工程 • 上一篇    下一篇

成层液化土中单桩-土-结构系统的水平振动分析

  

  1. (上海大学 土木工程系,上海 200072)
  • 收稿日期:2010-05-12 出版日期:2011-12-28 发布日期:2011-12-28
  • 通讯作者: 杨骁(1965~),男,教授,博士生导师,博士,研究方向为土桩结构相互作用、流固耦合作用. Email:xyang@shu.edu.cn
  • 作者简介:杨骁(1965~),男,教授,博士生导师,博士,研究方向为土桩结构相互作用、流固耦合作用. Email:xyang@shu.edu.cn
  • 基金资助:

    上海市自然科学基金资助项目(06ZR14037);国家自然科学基金资助项目(10872124)

Analysis of Horizontal Vibration of Pile-Soil-Superstructure System in Layered Liquefiable Soil

  1. (Department of Civil Engineering, Shanghai University, Shanghai 200072, China)
  • Received:2010-05-12 Online:2011-12-28 Published:2011-12-28

摘要: 根据地震场地液化特征,将土层分为上部液化土层与下部非液化土层,并基于桩土相互作用的Winkler模型,将桩等效为Rayleigh梁.建立了考虑上部结构的质量、转动惯量、桩身转动惯量和轴力效应的单桩-土-结构系统的控制方程和边界条件,在频率域给出了问题的解析封闭解.通过与相关实验结果的比较,验证模型和解析解的合理性和有效性,分析几何、物理参数等对单桩-土-结构系统位移放大因子、动力放大因子的影响.研究结果表明:桩身轴力使系统的基频更加趋向地震的主频;土壤的液化使得上部结构动力响应更加剧烈,随着土体液化程度的发展,桩的临界载荷将减小,最终导致桩发生失稳破坏.

关键词: Winkler模型, 动力特性, 失稳破坏, 土体液化, 桩-土-结构相互作用

Abstract: According to the characteristics of liquefiable soil in earthquake, we divide the liquefiable soil layer into a top liquefied layer and a bottom nonliquefied layer. Based on the Winkler model for the pilesoil interaction and treating the pile as a Rayleigh beam, the governing equations and the corresponding boundary conditions for interaction of the single pilesoilsuperstructure are established. This is done by taking into account the mass and inertia moment of the superstructure, and the inertia moment and the axial force of the pile. A closedform solution is obtained in the frequency domain, of which results are in agreement with experiments. Influences of the geometrical and physical parameters on the displacement amplification factor and the dynamic amplification factor are investigated. It is shown that the axial force drives the first natural frequency of the system to approach the dominant frequency of earthquake. Soil liquefaction increases the system’s dynamic response, and the critical load of the pile decreases with the degree of soil liquefaction, leading to unstable failure of the pile.

Key words: dynamic behavior, pile-soil-superstructure interaction, soil liquefaction, unstable failure, Winkler model

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