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Damage assessment of a highway network under scenario earthquakes for emergency response decision su

机译:情景地震下公路网的损伤评估,以用于应急决策

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Abstract: Damage to highway systems from recent earthquakes has emphasized the need for pre-event damage assessment of the existing highway systems so that the effective measures can be taken to reduce the loss from the future earthquake. In this paper, a Monte Carlo technique is presented which can be effectively used to simulate the states of bridge as well as highway network damage. With the aid of damage data, collected after the 1994 Northridge earthquake, the fragility curves are developed for each bridge on a limited access expressway network in Los Angeles County and Orange County in California, and classified in accordance with such attributes as whether it is a single span or multiple span, how much it is skewed and the condition of soil on which it is constructed. Monte Carlo simulations of states of bridge damage are performed based on these facility curves. A set of criteria and indices are then introduced, upon calibration with Northridge experience, for simulation of the damage state of each link and then the state of network damage when subjected to scenario earthquakes. The calibration is achieved by adjusting the criteria and indices by comparing the simulated states with the actual states of network damage under the Northridge earthquake. Computational time for one realization (simulation) of states of network damage is of the order of a few seconds. Therefore, the Monte Carlo simulation-based method of network damage assessment presented here can provide a post-earthquake response decision support system for highway networks; Since the purpose of the present study is to demonstrate the efficacy of the Monte Carlo simulation method, numerical examples are performed under the conditions that only bridges are seismically vulnerable, bridge fragility curves are available, and knowledge of the state of network damage suffices for government agencies and emergency response profession to make decisions as to how search/rescue/medical teams and emergency repair crews can be dispatched and how food, potable water and other emergency supplies can be transported by an optimal use of the remaining network capacity. In this study, the spatial distribution of ground motion intensity is estimated deterministically in terms of peak ground acceleration (PGA). The spatial variation of PGA due to modeling and other sources of uncertainty is expected to have some effect on the final result. This issue is currently under study. !6
机译:摘要:最近地震对公路系统造成的损害强调了对现有公路系统进行事前损害评估的必要性,以便采取有效措施减少未来地震造成的损失。本文提出了一种蒙特卡洛技术,可以有效地模拟桥梁的状态以及公路网的破坏。借助在1994年Northridge地震后收集的损坏数据,为洛杉矶县和加利福尼亚州奥兰治县的有限访问高速公路网络上的每座桥梁绘制了易损性曲线,并根据其是否为“易损性”进行了分类。单跨度或多跨度,其斜度以及构建土壤的条件。基于这些设施曲线进行了桥梁损坏状态的蒙特卡洛模拟。然后,根据Northridge的经验进行校准,然后引入一组标准和指标,以模拟每个链路的损坏状态,然后模拟发生场景地震时的网络损坏状态。通过将模拟状态与Northridge地震下网络破坏的实际状态进行比较,通过调整标准和指标来实现校准。网络损坏状态的一种实现(模拟)的计算时间约为几秒钟。因此,本文提出的基于蒙特卡罗模拟的网络损伤评估方法可以为公路网提供震后响应决策支持系统。由于本研究的目的是证明蒙特卡洛模拟方法的有效性,因此在仅桥梁易受地震,桥梁易碎性曲线可用以及了解网络破坏状态的知识足以满足政府要求的条件下进行了数值示例。机构和紧急响应专业机构就如何分配搜索/救援/医疗队和紧急维修人员以及如何通过充分利用剩余网络容量来运输食品,饮用水和其他紧急物资做出决定。在这项研究中,根据峰值地面加速度(PGA)确定性地估计了地面运动强度的空间分布。由于建模和其他不确定性源,PGA的空间变化有望对最终结果产生一定影响。这个问题目前正在研究中。 !6

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