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Numerical simulations of nonlinear seismic torsional pounding between two single-story structures

机译:两个单层结构之间的非线性地震扭转冲击的数值模拟

摘要

Nonlinear seismic torsional poundings between two asymmetric singlestory structures are investigated numerically. The torsional vibrations of these structures are modeled by 2 translational displacements and 1 rotation, and the impact force is modeled by the nonlinear but frictionless Hertz contact. Thirteen pounding scenarios are used to check for impact occurrence during the numerical integration. Inclusion of torsional response leads to more chaotic responses, comparing to the translational poundings considered by Chau and Wei (2001). For certain excitation periods, numerical simulations result in periodic group poundings that have been reported experimentally by Chau et al. (2003), and these periodic group poundings do not exist for the cases of non-torsional poundings. When the separation distance between the two structures increases, the chance of poundings decreases but the magnitude and shape of the relative impact velocity spectrum remain roughly the same. In general, relative impact velocity decreases with the translational damping ratio, but is less sensitive to the torsional damping ratio and to the value of eccentricity.
机译:数值研究了两个非对称单层结构之间的非线性地震扭转。这些结构的扭转振动通过2个平移位移和1个旋转进行建模,而冲击力则通过非线性但无摩擦的赫兹接触进行建模。在数值积分过程中,使用十三种冲击情景检查冲击的发生。与Chau和Wei(2001)所考虑的平移冲击相比,包含扭转响应会导致更多的混沌响应。对于某些激发周期,数值模拟会导致周期性的群撞击,Chau等人已通过实验报告了这一点。 (2003年),对于非扭转碰撞,这些周期群碰撞不存在。当两个结构之间的分离距离增加时,撞击的机会减少,但是相对冲击速度谱的大小和形状保持大致相同。通常,相对冲击速度随平移阻尼比而降低,但对扭转阻尼比和偏心率值不那么敏感。

著录项

  • 作者

    Wang LX; Chau KT; Wei XX;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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