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Life-cycle reliability assessment of reinforced concrete bridges under multiple hazards

机译:多种危害钢筋混凝土桥梁的生命周期可靠性评估

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This paper proposes a novel probabilistic methodology for estimating the life-cycle reliability of existing reinforced concrete (RC) bridges under multiple hazards. The life-cycle reliability of an RC bridge pier under seismic and airborne chloride hazards is compared to that of a bridge girder under traffic and airborne chloride hazards. When conducting a life-cycle reliability assessment of existing RC bridges, observational data from inspections can provide the corrosion level in reinforcement steel. Random variables related with the prediction of time-variant steel weight loss can be updated based on the inspection results using Sequential Monte Carlo Simulation (SMCS). This paper presents a novel procedure for identifying the hazards that most threaten the structural safety of existing RC bridges, as well as the structural components with the lowest reliability when these bridges are exposed to multiple hazards. The proposed approach, using inspection results associated with steel weight loss, provides a rational reliability assessment framework that allows comparison between the life-cycle reliabilities of bridge components under multiple hazards, helping the prioritisation of maintenance actions. The effect of the number of inspection locations on the updated reliability is considered by incorporating the spatial steel corrosion distribution. An illustrative example is provided of applying the proposed life-cyle reliability assessment to a hypothetical RC bridge under multiple hazards.
机译:本文提出了一种新的概率方法,用于估计多种危害下现有钢筋混凝土(RC)桥梁的生命周期可靠性。地震桥墩下RC桥墩的生命周期可靠性与交通桥梁梁的桥梁脉冲和空中氯化物危害。在进行现有RC桥的生命周期可靠性评估时,检查中的观测数据可以在钢筋中提供腐蚀水平。可以根据使用顺序蒙特卡罗模拟(SMC)的检测结果来更新与时间变体钢重量损失相关的随机变量。本文介绍了识别最威胁现有RC桥梁结构安全性的危害的新程序,以及当这些桥接造成多种危险时,结构部件具有最低可靠性的结构部件。所提出的方法,使用与钢重量损失相关的检查结果提供了合理的可靠性评估框架,可以在多种危险下进行桥梁组件的生命周期可靠性之间的比较,从而有助于维护行动的优先级。通过结合空间钢腐蚀分布,考虑检查位置对更新可靠性的效果。提供了一个说明性的例子,其在多次危险下将所提出的寿命的羊毛可靠性评估应用于假设的RC桥。

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