首页> 外文期刊>International journal of structural stability and dynamics >Stochastic Analysis of Vehicle-Bridge Coupled Interaction and Uncertainty Bounds of Random Responses in Heavy Haul Railways
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Stochastic Analysis of Vehicle-Bridge Coupled Interaction and Uncertainty Bounds of Random Responses in Heavy Haul Railways

机译:大荷尔铁路随机响应的车辆桥耦合相互作用及不确定性界的随机分析

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摘要

The systematic running safety assessment of railway bridges presents lots of challenges, one of which is estimating the uncertainty bounds of the structural responses of bridges under vehicle loads with multisource randomness. In this study, a probability safety assessment method is proposed for evaluating the uncertainty bounds of random time-history responses for the stochastic train-bridge coupled system. First, a refined probabilistic model for the train-bridge coupled system (TBS) in heavy haul railway is established with the multi-excitations of random track irregularities, random vehicle loads and stochastic structural parameters. The probability density evolution method (PDEM) is employed to obtain the solution of the time-varying probability transferred between the stochastic excitations and the output of the dynamic responses. Then, to establish a rapid and straightforward approach for the systematic running safety assessment of the TBS, the quantiles of the probability distribution are used to estimate the time-history uncertainty bounds of random responses of interest distributed in real probability functions. Case studies by the field test and numerical simulation are presented to verify and investigate the accuracy and reliability of the proposed method. The results show that the quantiles of the probability distribution proposed are suitable for the systematic running safety assessment of the TBS.
机译:铁路桥梁系统运行的安全评估呈现大量挑战,其中一个是估算车辆负荷下桥梁结构响应的不确定性范围,具有多源随机性。在该研究中,提出了一种概率安全评估方法,用于评估随机列车桥耦合系统的随机时间历史响应的不确定性范围。首先,利用随机轨道不规则性,随机车辆荷载和随机结构参数的多激发,建立了重载铁路中的火车桥耦合系统(TBS)的精细概率模型。使用概率密度进化方法(PDEM)来获得在随机激励和动态响应的输出之间传递的时变概率的溶液。然后,为了建立对TBS的系统运行安全评估的快速和直接的方法,概率分布的量级用于估计在实际概率函数中分布的随机响应的时间历史不确定性范围。提出了现场测试和数值模拟的案例研究以验证并研究所提出的方法的准确性和可靠性。结果表明,所提出的概率分布的量级适用于TBS的系统运行安全评估。

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