识别和优先考虑城市轨道交通网络的风险,重点是弹性(案例研究:德黑兰地铁)

A. Aghdasi, M. Abbaspour, A. Ahmadi
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引用次数: 0

摘要

背景与目的:城市轨道交通网络由于其特殊的条件,始终处于危险之中。许多案例表明,城市轨道交通系统存在着对人类社会构成威胁和风险的因素。因此,在本研究中,旨在识别和优先考虑城市轨道交通网络的风险,以提高弹性被提上议程。方法:采用描述性分析方法。本文统计的人口包括伊玛目霍梅尼车站的德黑兰地铁雇员。在本文中,有系统有目的的选取了样本量,选取了德黑兰伊玛目霍梅尼站的24名员工和管理人员。为了对德黑兰城市轨道交通系统进行危险分类,首先对危险进行识别,确定原因和后果,然后采用层次分析法对危险进行排序。结果:研究结果表明,德黑兰城市交通系统存在22种危害。应用层次分析法对已确定的危险进行优先排序的结果表明,洪水、泄漏和积水、地震、破坏和恐怖活动的风险分别属于德黑兰铁路运输网中重要优先的危险。此外,电站的热量、电站的污水系统和令人不快的化学气体的存在是研究区域内风险最小的项目。结论:研究站内德黑兰城市交通系统存在潜在危害。因此,根据已识别的风险,可以采取措施,如监测隧道和铁路线的行为和数据挖掘信息,使用消防设备,完成快速警报系统(与城市危机组织互动)和制定应急弹性指令。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identifying and Prioritizing the Risks of Urban Rail Transportation Networks with Emphasis on Resilience (Case Study: Tehran Metro)
Background & objectives: The urban rail transport network is always at risk due to its special conditions. Many cases indicate the existence of threatening and risk factors for human societies in urban rail transportation systems. Therefore, in this study, with the aim of identifying and prioritizing the risks of urban rail transportation networks in order to increase resilience is on the agenda. Methods: The research method was descriptive-analytical and applied. The statistical population of this article included Tehran metro employees at Imam Khomeini station. In this article, the sample size has been selected systematically and purposefully, which included 24 employees and managers of Imam Khomeini station in Tehran. To classify the hazards of Tehran's urban rail transportation system, first the hazards were identified and the cause and consequences were determined and then the hazards were prioritized using the analytic hierarchy process (AHP) method. Results: The results of the study showed that there are 22 hazards in Tehran's urban transportation system. The results of applying AHP in prioritizing the identified hazards indicated that the risk of floods, leaks and water accumulation, earthquakes, sabotage and terrorist activities, were among the hazards with important priorities in the rail transport network of Tehran, respectively. Also, heat in electric stations, sewage system of station and the presence of unpleasant chemical gases were among the items that had the least risks in the study area. Conclusion: The results showed that Tehran urban transportation system in the study station had potential hazards. Therefore, based on the identified risks, measures such as monitoring the behavior of tunnel and railway lines and data mining information, using firefighting equipment, completing the rapid alert system (in interaction with the Urban Crisis Organization) and developing emergency resilience instructions could be performed.
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