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Effect of cumulative seismic damage and corrosion on the life-cycle cost of reinforced concrete bridges

机译:累积地震破坏和腐蚀对钢筋混凝土桥梁生命周期成本的影响

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Bridge design should take into account not only safety and functionality, but also the cost effectiveness of investments throughout a bridge life-cycle. This paper presents a probabilistic approach to compute the life-cycle cost (LCC) of corroding reinforced concrete (RC) bridges in earthquake-prone regions. The approach is developed by combining cumulative seismic damage and damage associated with corrosion due to environmental conditions. Cumulative seismic damage is obtained from a low-cycle fatigue analysis. Chloride-induced corrosion of steel reinforcement is computed based on Fick's second law of diffusion. The proposed methodology accounts for the uncertainties in the ground motion parameters, the distance from the source, the seismic demand on the bridge, and the corrosion initiation time. The statistics of the accumulated damage and the cost of repairs throughout the bridge life-cycle are obtained by Monte-Carlo simulation. As an illustration of the proposed approach, the effects of design parameters on the LCC of an example RC bridge are studied. The results are valuable in better estimating the condition of existing bridges and, therefore, can help to schedule inspection and maintenance programs. In addition, by taking into consideration the two deterioration processes over a bridge life-cycle, it is possible to estimate the optimal design parameters by minimizing, for example, the expected cost throughout the life of the structure. A comparison between the effects of the two deterioration processes shows that, in seismic regions, the cumulative seismic damage affects the reliability of bridges over time more than the corrosion even for corrosive environments.
机译:桥梁设计不仅应考虑安全性和功能性,还应考虑整个桥梁生命周期中投资的成本效益。本文提出了一种概率方法来计算地震多发地区腐蚀钢筋混凝土(RC)桥梁的生命周期成本(LCC)。通过综合累积地震破坏和与环境条件相关的腐蚀造成的破坏来开发该方法。累积地震破坏是通过低周疲劳分析获得的。根据菲克第二扩散定律计算出氯化物引起的钢筋腐蚀。所提出的方法考虑了地震动参数,距震源的距离,桥梁的地震需求以及腐蚀开始时间的不确定性。通过蒙特卡洛仿真可以获得整个桥梁生命周期中累积的损坏和维修成本的统计数据。为了说明所提出的方法,研究了设计参数对示例RC桥的LCC的影响。结果对于更好地估计现有桥梁的状况非常有价值,因此可以帮助安排检查和维护计划。另外,通过考虑桥梁寿命周期内的两个劣化过程,可以通过使例如整个结构寿命期间的预期成本最小化来估计最佳设计参数。两种劣化过程的影响之间的比较表明,在地震区域,累积的地震破坏对桥梁的可靠性的影响远大于腐蚀,即使是在腐蚀性环境下,其随时间的推移也会影响桥梁的可靠性。

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