弹性(材料科学)
城市复原力
系统动力学
大流行
心理弹性
公司治理
控制(管理)
2019年冠状病毒病(COVID-19)
业务
风险分析(工程)
环境规划
计算机科学
城市规划
工程类
地理
土木工程
医学
心理学
物理
疾病
财务
病理
人工智能
传染病(医学专业)
心理治疗师
热力学
作者
Jiaming Zhang,Tao Wang
出处
期刊:Cities
[Elsevier BV]
日期:2023-03-06
卷期号:136: 104265-104265
被引量:51
标识
DOI:10.1016/j.cities.2023.104265
摘要
The COVID-19 pandemic, which lasted for three years, has had a great impact on the public health system, society and economy of cities, revealing the insufficiency of urban resilience under large-scale public health events (PHEs). Given that a city is a networked and multidimensional system with complex interactions, it is helpful to improve urban resilience under PHEs based on system thinking. Therefore, this paper proposes a dynamic and systematic urban resilience framework that incorporates four subsystems (governance, infrastructures, socioeconomy and energy-material flows). The composite index, system dynamics and epidemic simulation model are integrated into the framework to show the nonlinear relationships in the urban system and reflect the changing trend of urban resilience under PHEs. Then, urban resilience under different epidemic scenarios and response policy scenarios is calculated and discussed to provide some suggestions for decision-makers when faced with the trade-off between the control of PHEs and the maintenance of city operation. The paper concludes that control policies could be adjusted according to the characteristics of PHEs; strict control policies under a severe epidemic could lead to a significant decrease in urban resilience, while a more flexible control strategy can be adopted under a mild epidemic scenario to ensure the normal operation of urban functions. Moreover, the critical functions and impact factors of each subsystem are identified.
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