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Conditional simulation of nonstationary fluctuating wind speeds for long-span bridges

机译:大跨度桥梁非平稳脉动风速的条件模拟

摘要

This paper presents a computationally efficient method for the conditional simulation of nonstationary fluctuating wind speeds for the buffeting analysis of long-span bridges. The fluctuating wind speeds, with part of their time histories measured at some points, are regarded as a zero-mean nonstationary Gaussian vector process characterized by an evolutionary power spectral density (EPSD) matrix. The Kriging method is then applied to the random vector of the Fourier coefficients of the evolutionary vector process for conditional simulation. A mathematical proof of this conditional simulation is provided. A fast algorithm of the conditional simulation is further derived, by converting the Cholesky decomposition of a large size covariance matrix of the Fourier coefficients into the Cholesky decomposition of a series of small-size coherence matrices with much less computational time. The procedure for implementing the fast algorithm-based conditional simulation method is detailed. Finally, this method is applied for the conditional simulation of typhoon-induced nonstationary wind speed time histories for the buffeting analysis of Stonecutters Bridge in Hong Kong. The time domain buffeting responses of the bridge obtained using the conditionally simulated wind speed time histories indicate that the proposed simulation method is feasible and applicable.
机译:本文针对大跨度桥梁的抖振分析,提出了一种用于非平稳脉动风速条件仿真的高效计算方法。波动的风速以及在某些点上测得的部分时间历史,被认为是零均值非平稳高斯矢量过程,其特征在于演化功率谱密度(EPSD)矩阵。然后,将克里格方法应用于演化矢量过程的傅立叶系数的随机矢量,以进行条件仿真。提供了此条件模拟的数学证明。通过将傅立叶系数的大协方差矩阵的Cholesky分解转换为一系列小尺寸相干矩阵的Cholesky分解,并且计算时间少得多,可以进一步得到条件仿真的快速算法。详细介绍了基于算法的快速条件仿真方法的实现过程。最后,该方法被用于台风诱发的非平稳风速时间历史的条件模拟,以用于香港昂船洲大桥的抖振分析。利用条件模拟风速时间历程获得的桥梁时域抖振响应表明,所提方法是可行的。

著录项

  • 作者

    Xu YL; Hu L; Kareem A;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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