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The Effect of Soil Structure Interaction on the Behavior of Base Isolated Structures.

机译:土-结构相互作用对基础隔震结构性状的影响。

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摘要

Abstract This master thesis investigates the effect of soil structure interaction on the behavior of base isolated structures. A linear soil model coupled with a nonlinear model of a base-isolated structure is assembled as a nonlinear system in state-space. Transient responses to earthquake ground motions are computed by integrating the nonlinear equations with a fixed-time step.Earthquake ground motions representative of near fault and far-field conditions are generated and tested for this system. The effects of soil compliance and friction in the base isolation system are then evaluated. An eigenvalue analysis of the dynamics matrix of the couple system gives the evidence that the soil structure interaction increases the periods of the structure positively. It is shown that the base isolation system with large hysteretic frictional force is less effective in achieving the goals of seismic isolation; large isolation-level friction couples the structure above it too tightly, which results in less deformation in base isolator and larger roof acceleration than intended for a seismically-isolated structure. In addition, the base isolation system with large hysteretic frictional force produces larger residual displacements for both base isolator and the above floors. The impact factor of shear wave velocity to the stiffness of soil is more difficult to assess. Therefore, nonlinear liquefied soil model is recommended to be calibrated for soil structure interaction evaluation as well as to be compared with empirical testing. To this end, nonlinear models for liquefying soil are investigated.
机译:摘要本论文研究了土壤结构相互作用对基础隔震结构行为的影响。线性土模型与基础隔震结构的非线性模型相结合,被组装成状态空间中的非线性系统。通过将非线性方程与固定时间步长进行积分来计算对地震地震动的瞬态响应,并生成并测试了代表近断层和远场条件的地震地震动。然后评估基础隔离系统中土壤顺应性和摩擦的影响。耦合系统动力学矩阵的特征值分析表明,土壤结构相互作用正向增加了结构的周期。结果表明,具有较大滞后摩擦力的基础隔震系统在实现隔震目的方面效果较差。与地震隔离结构相比,大的隔离级摩擦将其上方的结构耦合得太紧,导致基本隔离器的变形较小,并且屋顶加速度更大。另外,具有大的滞后摩擦力的基础隔离系统对于基础隔离器和上述地板都产生较大的残余位移。剪切波速度对土壤刚度的影响因子更难以评估。因此,建议对非线性液化土壤模型进行标定,以进行土壤结构相互作用评估,并与经验试验进行比较。为此,研究了液化土壤的非线性模型。

著录项

  • 作者

    Yin Boya.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2014
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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