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Reliability assessment of railway bridges subjected to high-speed trains considering the effects of seasonal temperature changes

机译:考虑季节温度变化影响的高速列车铁路桥梁可靠性评估

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This paper addresses the reliability analysis of high-speed railway bridges with stochastic methods to account for uncertainties in the mechanical model. The emphasis is on ballasted steel bridges. The acceleration response of the bridge deck is assumed to be the governing response quantity for bridge serviceability, and thus, defines in the reliability assessment the limit state of the bridge. The uncertainties for this specific interaction problem are identified and modeled as random variables with appropriate distributions. The effect of uncertain track quality is considered via random rail profiles. A stochastic model is proposed to account for the environmental impact of seasonal temperature changes on the bridge structure. In a parametric study, the contribution of the random variables on the uncertain bridge response of a case study problem is quantified. The probability of exceeding the serviceability limit state is predicted using crude Monte Carlo simulations and Latin Hypercube samples. These predictions are set in contrast to outcomes of a traditional code-based deterministic design procedure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文采用随机方法解决高速铁路桥梁的可靠性问题,以解决力学模型中的不确定性问题。重点是压载钢桥。桥面板的加速度响应被假定为用于桥梁使用寿命的支配响应量,因此,在可靠性评估中定义了桥梁的极限状态。确定此特定交互问题的不确定性并将其建模为具有适当分布的随机变量。轨道质量不确定的影响是通过随机轨道轮廓来考虑的。提出了一种随机模型来说明季节性温度变化对桥梁结构的环境影响。在参数研究中,将量化随机变量对案例研究问题的不确定桥梁响应的贡献。使用粗略的蒙特卡洛模拟和Latin Hypercube样本可预测超过可使用性极限状态的概率。这些预测与传统的基于代码的确定性设计过程的结果形成对比。 (C)2016 Elsevier Ltd.保留所有权利。

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