Characteristics of Urban Flood Resilience Evolution and Analysis of Influencing Factors: A Case Study of Yingtan City, China

Author:

Yuan Donghai1,Wang Hui1ORCID,Wang Chen2,Yan Chenling3,Xu Lili4,Zhang Chunyang2,Wang Jiazhuo2,Kou Yingying1

Affiliation:

1. Key Laboratory of Urban Stormwater System and Water Environment, Ministry of Education, Beijing University of Civil Engineering and Architecture, Beijing 100044, China

2. CAUPD (Beijing) Planning & Design Consultants Co., Ltd., Beijing 100044, China

3. Municipal Institute of City Management, Beijing 100028, China

4. China Railway Construction Network Information Technology Co., Ltd., Beijing 100043, China

Abstract

Intense climate change and rapid urbanization have increased the risk of urban flooding, seriously affecting urban economic and social stability. Enhancing urban flood resilience (UFR) has required a new solution to cope with urban flood disasters. In this study, taking Yingtan city as an example, a system of indicators for evaluating UFR was constructed, with 17 representative indicators, comprising three subsystems: socio-economic, ecological, and infrastructural. A hybrid model combining Fuzzy Analytic Hierarchy Process (FAHP), Entropy Weight Method (EWM), and Technique for Order Preference by Similarity to Ideal Solution (TOPSIS) was applied, to develop an index-based measurement to compare and evaluate UFR, and Gray Relational Analysis (GRA) was used to discover the main factors affecting UFR. In addition, the natural discontinuous method was innovatively used to divide the UFR grade interval into levels, and the grade change was evaluated based on the TOPSIS method. The results showed that (1) From 2010 to 2022, the UFR in Yingtan City increased by 80.69%, and the factors affecting UFR were highly correlated with urban infrastructure development; however, the ecological resilience in the subsystem showed a fluctuating downward trend because of the influence of the surface area of lakes and rivers; (2) The grades of UFR for Yingtan City increased from Level III (2010 and 2016) to Level IV (2022), with local financial expenditures and the age structure of the population being the main factors currently limiting the development of UFR. The study provides a theoretical basis for the construction of an indicator system for assessing the UFR of Yingtan and proposes practical improvement directions for UFR.

Funder

National Natural Science Foundation of China

Beijing Natural Science Foundation

Project of Construction and Support for high-level Innovative Teams of Beijing Municipal Institutions

Open Research Fund of State Environmental Protection Key Laboratory for Lake Pollution Control

Fundamental Research Funds for the Central Public-interest Scientific Institution

Publisher

MDPI AG

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