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Evaluating the response statistics of an uncertain bridge-vehicle system

机译:评估不确定桥梁车辆系统的响应统计

摘要

This paper addresses the statistical prediction of dynamic response of a bridge structure with inherent uncertainty under stochastic moving loads. The uncertainty in bridge structure, which is assumed with Gaussian properties, is modeled by the Spectral Stochastic Finite Element Method. The uncertain moving forces with Gaussian distribution are represented by the Karhunen-Loeve expansion. The Polynomial chaos expansion is adopted to represent the uncertain response such that the proposed algorithm is not limited to system with small uncertainty. The bridge is modeled as a simply supported Bernoulli-Euler beam and the bridge-vehicle interaction forces are modeled as Gaussian random processes related to the power spectral density of the surface roughness defined in the ISO standard. The mathematical model of the bridge-vehicle system is formulated and solved with the Newmark-beta method. The response statistics of the bridge are compared with those from Monte Carlo simulation. Different levels of uncertainty in both the system parameters and the moving forces are studied to investigate the accuracy and robustness of the proposed method in the stochastic analysis of the bridge-vehicle interaction problem.
机译:本文探讨了随机移动载荷作用下具有固有不确定性的桥梁结构动力响应的统计预测。高斯特性假设的桥梁结构不确定性通过光谱随机有限元法建模。具有高斯分布的不确定运动力由Karhunen-Loeve展开表示。采用多项式混沌展开来表示不确定性响应,从而使该算法不仅限于不确定性较小的系统。桥梁建模为简单支撑的伯努利-欧拉梁,桥梁与车辆的相互作用力建模为与ISO标准中定义的表面粗糙度的功率谱密度有关的高斯随机过程。用Newmark-beta方法建立并求解了桥梁车辆系统的数学模型。将桥梁的响应统计数据与蒙特卡洛模拟的响应统计数据进行比较。研究了系统参数和运动力的不同程度的不确定性,以研究该方法在桥梁与车辆相互作用问题的随机分析中的准确性和鲁棒性。

著录项

  • 作者

    Wu SQ; Law SS;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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