School of Chemical Engineering, National Technical University of Athens, Zografou Campus, Athens 157 80, Greece.
J Hazard Mater. 2010 Jun 15;178(1-3):792-803. doi: 10.1016/j.jhazmat.2010.02.010. Epub 2010 Feb 10.
Emergency response planning in case of a major accident (hazardous material event, nuclear accident) is very important for the protection of the public and workers' safety and health. In this context, several protective actions can be performed, such as, evacuation of an area; protection of the population in buildings; and use of personal protective equipment. The best solution is not unique when multiple criteria are taken into consideration (e.g. health consequences, social disruption, economic cost). This paper presents a methodology for multi-objective optimization of emergency response planning in case of a major accident. The emergency policy with regards to protective actions to be implemented is optimized. An evolutionary algorithm has been used as the optimization tool. Case studies demonstrating the methodology and its application in emergency response decision-making in case of accidents related to hazardous materials installations are presented. However, the methodology with appropriate modification is suitable for supporting decisions in assessing emergency response procedures in other cases (nuclear accidents, transportation of hazardous materials) or for land-use planning issues.
在发生重大事故(危险物质事件、核事故)的情况下,应急响应规划对于保护公众和工人的安全和健康非常重要。在这种情况下,可以采取几种防护措施,例如疏散区域;在建筑物中保护人口;以及使用个人防护设备。当考虑多个标准时(例如健康后果、社会干扰、经济成本),最佳解决方案并不是唯一的。本文提出了一种用于重大事故应急响应规划的多目标优化方法。对要实施的防护措施的应急政策进行了优化。已使用进化算法作为优化工具。展示了案例研究,说明了该方法及其在与危险物质装置相关的事故应急决策中的应用。然而,经过适当修改,该方法适用于支持其他情况下(核事故、危险物质运输)评估应急响应程序或土地利用规划问题的决策。