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Resilience of Networked Infrastructure with Evolving Component Conditions: Pavement Network Application

机译:具有不断变化的组件条件的网络基础设施的恢复能力:路面网络应用

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摘要

This paper deals with quantifying the resilience of a network of pavements. Calculations were carried out by modeling network performance under a set of possible damage-meteorological scenarios with known probability of occurrence. Resilience evaluation was performed a priori while accounting for optimal preparedness decisions and additional response actions that can be taken under each of the scenarios. Unlike the common assumption that the pre-event condition of all system components is uniform, fixed, and pristine, component condition evolution was incorporated herein. For this purpose, the health of the individual system components immediately prior to hazard event impact, under all considered scenarios, was associated with a serviceability rating. This rating was projected to reflect both natural deterioration and any intermittent improvements due to maintenance. The scheme was demonstrated for a hypothetical case study involving LaGuardia Airport. Results show that resilience can be impacted by the condition of the infrastructure elements, their natural deterioration processes, and prevailing maintenance plans. The findings imply that, in general, upper bound values are reported in ordinary resilience work, and that including evolving component conditions is of value. (C) 2016 American Society of Civil Engineers.
机译:本文涉及量化人行道网络的弹性。通过在一组已知的发生概率的可能损害气象情景下对网络性能进行建模来进行计算。在评估最佳准备决策和在每种情况下可以采取的其他应对措施的同时,先验评估了灵活性。与所有系统组件的事前条件均是统一的,固定的和原始的通常假设不同,此处引入了组件条件演化。为此,在所有考虑的情况下,紧接危害事件发生之前的各个系统组件的运行状况都与可维护性等级相关联。预计该等级将反映自然恶化和由于维护而造成的间歇性改进。该方案在涉及拉瓜迪亚机场的假设案例研究中得到了证明。结果表明,弹性可能会受到基础结构元素的状况,其自然退化过程以及现行维护计划的影响。该发现暗示,通常在常规弹性工作中报告了上限值,并且包括不断变化的组件条件也很有价值。 (C)2016年美国土木工程师学会。

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