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The response of stick-slip systems to random seismic excitation

机译:粘滑系统对随机地震激励的响应

摘要

This thesis examines the response of stick-slip, or frictional, systems to harmonic and random excitation. Two frictional models are considered: constant slip force, or Coulomb, friction, and displacement dependent slip force, used to model a caster, or pivoting wheel. The response to harmonic excitation of systems exhibiting both frictional models is determined using the method of slowly varying parameters. Changes in the response amplitude of both systems caused by the addition of a linear centering mechanism are also examined.The response of the system with displacement dependent slip force is examined under Gaussian mean zero white noise excitation using the generalized equivalent linearization method. It is shown that a lower bound is obtained from the Coulomb friction system's response.For filtered random excitation, linearization methods are shown to predict erroneous displacement trends for the Coulomb system when the input has no spectral content at zero frequency. When the excitation is modeled as a Poisson pulse process, an approximate method exhibiting the proper displacement trends can be constructed. The method is shown to be accurate over a broad range of input parameters if overlaps in the input pulses are considered. A set of excitation parameters consistent with seismic events is then used to estimate final rms displacements as a function of coefficient of friction.
机译:本文研究了粘滑系统或摩擦系统对谐波和随机激励的响应。考虑了两个摩擦模型:恒定的滑动力或库仑摩擦,与位移有关的滑动力,用于对脚轮或枢转轮进行建模。表现出两个摩擦模型的系统对谐波激励的响应是通过缓慢改变参数的方法来确定的。还研究了由于增加了线性定心机制而引起的两个系统响应幅度的变化。使用广义等效线性化方法,在高斯平均零白噪声激励下,研究了具有位移相关滑移力的系统的响应。结果表明,从库仑摩擦系统的响应可以获得一个下限。对于滤波后的随机激励,当输入在零频率下没有频谱含量时,线性化方法可以预测库仑系统的错误位移趋势。当将激励建模为泊松脉冲过程时,可以构造出具有适当位移趋势的近似方法。如果考虑到输入脉冲中的重叠,则该方法在广泛的输入参数范围内均显示出准确的效果。然后,使用一组与地震事件相一致的激励参数来估计作为摩擦系数函数的最终均方根位移。

著录项

  • 作者

    Moser Michael Anthony;

  • 作者单位
  • 年度 1986
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  • 原文格式 PDF
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