Dynamic decision making for dam-break emergency management-Part 1: Theoretical framework

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Abstract

An evacuation decision for dam breaks is a very serious issue. A late decision may lead to loss of lives and properties, but a very early evacuation will incur unnecessary expenses. This paper presents a risk-based framework of dynamic decision making for dam-break emergency management (DYDEM). The dam-break emergency management in both time scale and space scale is introduced first to define the dynamic decision problem. The probability of dam failure is taken as a stochastic process and estimated using a time-series analysis method. The flood consequences are taken as functions of warning time and evaluated with a human risk analysis model (HURAM) based on Bayesian networks. A decision criterion is suggested to decide whether to evacuate the population at risk (PAR) or to delay the decision. The optimum time for evacuating the PAR is obtained by minimizing the expected total loss, which integrates the time-related probabilities and flood consequences. When a delayed decision is chosen, the decision making can be updated with available new information. A specific dam-break case study is presented in a companion paper to illustrate the application of this framework to complex dam-breaching problems. © 2013 Author(s).

Figures

  • Table 1. Flood consequences
  • Fig. 1. Decision tree for dam-break emergency management (modified from Frieser, 2004) Fig. 1. Decision tree for dam-break emergency management (modified from Fri ser, 2004).
  • Fig. 2. Schematic of the dam breaching and warning time Fig. 2. Schematic of the dam breaching and warning time.
  • Fig. 3. Emergency management of dam breaks in time scale (modified from Frieser, 2004).
  • Fig. 4. Emergency management of dam breaks in space scale.
  • Fig. 5. Probability of dam-break flood as a ontinu us stochastic process of time.
  • Fig. 6. Probability of dam-break flood as a discrete stochastic process of time.
  • Fig. 7. Flood consequences as functions of time for evacuating the PAR.

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APA

Peng, M., & Zhang, L. M. (2013). Dynamic decision making for dam-break emergency management-Part 1: Theoretical framework. Natural Hazards and Earth System Science, 13(2), 425–437. https://doi.org/10.5194/nhess-13-425-2013

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