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Probability-based uncertainty evaluation through Markov Chain Monte Carlo sampling and response surface technologies

机译:通过马尔可夫链蒙特卡洛采样和响应面技术进行基于概率的不确定性评估

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摘要

Inspection of a pre-stressed concrete variable cross-section box girder bridge discovered the phenomenon of padding in expansion joint, corrosion of steel plate and local edge failure in pot type rubber bearing, and cracks of box girder. They are the main sources of structural uncertainty for structural performance evaluation, and how to quantificationally evaluate their influences on bridge performance is important. In this article, an approach using the Markov Chain Monte Carlo sampling technology and the Response Surface Method is proposed to deal with the uncertainty problem. First, a population of finite element (FE) models will be established by sampling the main uncertainty sources through the Markov Chain Monte Carlo technology. Then, the posterior probability of each FE model will be evaluated by using the measured static responses and identified structural dynamic characteristics. Especially, the second order response surface method will be used in this step to improve the computation efficiency. Through the above procedures, probability features of the defined key parameters representing structural uncertainty, including the stiffness of expansion joint, the stiffness of pot type rubber bearing and the elasticity modulus of the box girder will be estimated, which will provide valuable information for reliable structural performance evaluation.
机译:对预应力混凝土变截面箱梁桥的检查发现了伸缩缝中的填料,钢板腐蚀和罐式橡胶轴承局部边缘破坏以及箱梁裂纹的现象。它们是结构性能评估中结构不确定性的主要来源,如何量化评估其对桥梁性能的影响很重要。本文提出了一种使用马尔可夫链蒙特卡洛采样技术和响应面方法的方法来解决不确定性问题。首先,将通过马尔可夫链蒙特卡洛技术对主要不确定性源进行采样,从而建立有限元(FE)模型。然后,将通过使用测得的静态响应和确定的结构动力学特性来评估每个有限元模型的后验概率。特别地,在该步骤中将使用二阶响应面法来提高计算效率。通过上述程序,将估算出代表结构不确定性的关键参数的概率特征,包括伸缩缝的刚度,罐式橡胶轴承的刚度和箱形梁的弹性模量,这将为可靠的结构提供有价值的信息。绩效评估。

著录项

  • 作者

    Zhu F. Q.; Li P. J.; Zhang J.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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