Research on the Comprehensive Evaluation Model of Risk in Flood Disaster Environments
Type de ressource
Auteurs/contributeurs
- Yu, Yan (Auteur)
- Zhou, Tianhua (Auteur)
Titre
Research on the Comprehensive Evaluation Model of Risk in Flood Disaster Environments
Résumé
Losses from floods and the wide range of impacts have been at the forefront of hazard-triggered disasters in China. Affected by large-scale human activities and the environmental evolution, China’s defense flood situation is undergoing significant changes. This paper constructs a comprehensive flood disaster risk assessment model through systematic analysis of four key factors—hazard (H), exposure (E), susceptibility/sensitivity (S), and disaster prevention capabilities (C)—and establishes an evaluation index system. Using the Analytic Hierarchy Process (AHP), we determined indicator weights and quantified flood risk via the following formula R = H × E × V × C. After we applied this model to 16 towns in coastal Zhejiang Province, the results reveal three distinct risk tiers: low (R < 0.04), medium (0.04 ≤ R ≤ 0.1), and high (R > 0.1). High-risk areas (e.g., Longxi and Shitang towns) are primarily constrained by natural hazards and socioeconomic vulnerability, while low-risk towns benefit from a robust disaster mitigation capacity. Risk typology analysis further classifies towns into natural, social–structural, capacity-driven, or mixed profiles, providing granular insights for targeted flood management. The spatial risk distribution offers a scientific basis for optimizing flood control planning and resource allocation in the district. © 2025 by the authors.
Publication
Water (Switzerland)
Volume
17
Numéro
15
Date
2025
Abrév. de revue
Water
Langue
English
ISSN
2073-4441
Catalogue de bibl.
Scopus
Extra
Publisher: Multidisciplinary Digital Publishing Institute (MDPI)
Référence
Yu, Y., & Zhou, T. (2025). Research on the Comprehensive Evaluation Model of Risk in Flood Disaster Environments. Water (Switzerland), 17(15). https://doi.org/10.3390/w17152178
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