Use of corridors to select bridges to retrofit in road networks in seismic regions

IF 2.7 Q2 ENGINEERING, CIVIL Sustainable and Resilient Infrastructure Pub Date : 2022-11-01 DOI:10.1080/23789689.2022.2108594
Rodrigo Silva-Lopez, J. Baker
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引用次数: 1

Abstract

ABSTRACT This study proposes the use of bridge clusters, defined as Corridors, to support optimal bridge retrofitting strategies for seismic risk management of road networks. A Corridor is defined as a set of bridges that works jointly to ensure connectivity and traffic flow between different areas of a region. To detect Corridors, a Markov Clustering Algorithm is proposed. Using the San Francisco Bay Area road network as a testbed, this clustering technique selects sets of bridges that correspond to main traffic arteries such as highways and high-capacity road segments. After Corridors have been detected, a two-stage stochastic optimization is implemented to detect which bridges should be retrofitted to ensure an acceptable network performance. This optimization couples retrofitting actions in a Corridor with the repair actions to damaged bridges after an earthquake. The Corridors-Supported Optimization decreases road network disruption more than other approaches based on ranking bridges according to their traffic capacity or location in the network.
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利用廊道选择桥梁进行震区道路网改造
摘要本研究建议使用桥梁群(定义为走廊)来支持道路网络地震风险管理的最佳桥梁改造策略。走廊是指一组桥梁,它们共同工作,以确保一个地区不同区域之间的连通性和交通流量。为了检测走廊,提出了一种马尔可夫聚类算法。该聚类技术以旧金山湾区公路网为试验台,选择与高速公路和高容量路段等主要交通干线相对应的桥梁组。在检测到走廊后,实施两阶段随机优化,以检测哪些桥梁应进行改造,以确保可接受的网络性能。这种优化将走廊中的改造行动和地震后受损桥梁的修复行动结合起来。与其他基于桥梁通行能力或在网络中的位置进行排名的方法相比,走廊支持的优化方法更能减少道路网络中断。
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来源期刊
CiteScore
7.60
自引率
10.20%
发文量
34
期刊介绍: Sustainable and Resilient Infrastructure is an interdisciplinary journal that focuses on the sustainable development of resilient communities. Sustainability is defined in relation to the ability of infrastructure to address the needs of the present without sacrificing the ability of future generations to meet their needs. Resilience is considered in relation to both natural hazards (like earthquakes, tsunami, hurricanes, cyclones, tornado, flooding and drought) and anthropogenic hazards (like human errors and malevolent attacks.) Resilience is taken to depend both on the performance of the built and modified natural environment and on the contextual characteristics of social, economic and political institutions. Sustainability and resilience are considered both for physical and non-physical infrastructure.
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