Jiao Liudan, Zhu Yinghan, Huo Xiaosen, Wu Ya, Zhang Yu
School of Economics and Management, Chongqing Jiaotong University, Chongqing, 400074 China.
School of Management and Engineering, Nanjing University, Nanjing, 210093 China.
Nat Hazards (Dordr). 2023;116(2):2311-2337. doi: 10.1007/s11069-022-05765-2. Epub 2022 Dec 23.
Extremely heavy rainfall has posed a significant hazard to urban growth as the most common and disaster-prone natural calamity. Due to its unique geographical location, the metro system is more vulnerable to waterlogging caused by rainstorm disaster. Research on resilience to natural disasters has attracted extensive attention in recent years. However, few studies have focused on the resilience of the metro system against rainstorms. Therefore, this paper aims to develop an assessment model for evaluating metro stations' resilience levels. Twenty factors are carried out from dimensions of resistance, recovery and adaptation. The methods of ordered binary comparison, entropy weight and cloud model are proposed to build the assessment model. Then, taking Chongqing metro system in china as a case study, the resilience level of 13 metro stations is calculated. Radar charts from dimensions of resistance, recovery, and adaptation are created to propose recommendations for improving metro stations' resilience against rainstorms, providing a reference for the sustainable development of the metro system. The case study of the Chongqing metro system in china demonstrates that the assessment model can effectively evaluate the resilience level of metro stations and can be used in other infrastructures under natural disasters for resilience assessment.
作为最常见且易发生灾害的自然灾害,特大暴雨对城市发展构成了重大危害。由于其独特的地理位置,地铁系统更容易受到暴雨灾害引发的内涝影响。近年来,对自然灾害韧性的研究受到了广泛关注。然而,很少有研究关注地铁系统对暴雨的韧性。因此,本文旨在开发一个评估模型,用于评估地铁站的韧性水平。从抵抗、恢复和适应三个维度选取了20个因素。提出了有序二元比较法、熵权法和云模型来构建评估模型。然后,以中国重庆地铁系统为例,计算了13个地铁站的韧性水平。绘制了抵抗、恢复和适应维度的雷达图,为提高地铁站对暴雨的韧性提出建议,为地铁系统的可持续发展提供参考。中国重庆地铁系统的案例研究表明,该评估模型能够有效评估地铁站的韧性水平,可用于其他自然灾害下基础设施的韧性评估。