4.7 Article

Evaluation and promotion strategy of resilience of urban water supply system under flood and drought disasters

期刊

SCIENTIFIC REPORTS
卷 12, 期 1, 页码 -

出版社

NATURE PORTFOLIO
DOI: 10.1038/s41598-022-11436-w

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资金

  1. National Natural Science Foundation of China [71874123, 71974122, 71704162]
  2. Humanities and Social Science Research Youth Fund Project of Ministry of Education [17YJC630184]
  3. Open Fund of innovation institute for Sustainable Maritime Architecture Research and Technology (iSMART)
  4. Qingdao University of Technology [C2020-043]

向作者/读者索取更多资源

With the impacts of global climate change and rapid urbanization, urban flood and drought disasters are occurring frequently, posing serious challenges to urban water supply systems. This paper proposes a method to assess the resilience of urban water supply systems and applies it to evaluate and analyze the water supply system in Qingdao. The results provide decision support for planning and building resilience in urban water systems.
With global climate change and the rapid urbanization, urban flood and drought disasters are frequent and urban water supply systems are facing a sea of serious challenges. It is crucial to assess the resilience of urban water supply systems and develop corresponding disaster mitigation and improvement strategies. Urban water supply systems include many subsystems, but existing researches generally focus on a single subsystem. Therefore, this paper proposes a correlation analysis method and a factor analysis method for the resilience evaluation index system of urban water supply systems by combining each subsystem and applying grey system theory. The method can reflect the four dimensions of the water supply process (water source, water plant, supply and distribution network and users) and the five dimensions of the urban management system (society, natural environment, economy, physics and organization). Taking Qingdao as an example, a multi-level integrated evaluation model based on a cloud model is applied to simulate and analyze the resilience of Qingdao's water supply system. As a result, decision support is provided for planning and building resilience systems for urban water systems in the short and long term, based on four main factors.

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