4.6 Article

A Method for Fast Evaluation of Potential Consequences of Dam Breach

期刊

WATER
卷 11, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/w11112224

关键词

dam breach; consequences; life; economy; catastrophe evaluation

资金

  1. National Natural Science Foundation of China [51679222, 51709239, 51379192]
  2. China Postdoctoral Science Foundation [2018M632809]
  3. China Study Abroad Foundation [201808410536]
  4. Science and Technology Project of Henan Province of China [182102311070]
  5. Key Project of Science and Technology Research of Education Department of Henan Province of China [18A570007]
  6. Science and Technology Project of Water Conservancy of Henan Province of China [GG201813]

向作者/读者索取更多资源

Dam breach has catastrophic consequences for human lives and economy. In previous studies, empirical models are often, to a limited extent, due to the inadequacy of historical dam breach events. Physical models, which focus on simulating human behavior during floods, are not suitable for fast analysis of a large number of dams due to the complexities of many key parameters. Therefore, this paper proposes a method for fast evaluation of potential consequences of dam breach. Eight main indices, i.e., capacity of reservoir (C-R), dam height (H-D), population at risk (P-R), economy at risk (E-R), understanding of dam breach (U-B), industry type (T-I), warning time (T-W), and building vulnerability (V-B), are selected to establish an evaluation index system. A catastrophe evaluation method is introduced to establish an evaluation model for potential consequences of dam breach based on the indices which are divided into five grades according to the relevant standards and guidelines. Validation of the method by twelve historical dam breach events shows a good accuracy. The method is applied to evaluate potential consequences of dam breach of Jiangang Reservoir in Henan Province, China. It is estimated that loss of life in the worst scenario is between that of Hengjiang Reservoir and that of Shimantan Reservoir dam breach, of which fatalities are 941 and 2717, respectively, showing that risk management measures should be taken to reduce the risk of potential loss of life.

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