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Cellular Automata-based Systematic Risk Analysis Approach For Emergency Response

机译:基于元胞自动机的系统风险分析方法

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摘要

Emergency response is directly related to the allocation of emergency rescue resources. Efficient emergency response can reduce loss of life and property, limit damage from the primary impact, and minimize damage from derivative impacts. An appropriate risk analysis approach in the event of accidents is one rational way to assist emergency response. In this article, a cellular automata-based systematic approach for conducting risk analysis in emergency response is presented. Three general rules, i.e., diffusive effect, transporting effect, and dissipa-tive effect, are developed to implement cellular automata transition function. The approach takes multiple social factors such as population density and population sensitivity into consideration and it also considers risk of domino accidents that are increasing due to increasing congestion in industrial complexes of a city and increasing density of human population. In addition, two risk indices, i.e., individual risk and aggregated weighted risk, are proposed to assist decision making for emergency managers during emergency response. Individual risk can be useful to plan evacuation strategies, while aggregated weighted risk can help emergency managers to allocate rescue resources rationally according to the degree of danger in each vulnerable area and optimize emergency response programs.
机译:应急响应与应急救援资源的分配直接相关。高效的应急响应可以减少人员伤亡和财产损失,减少主要冲击造成的破坏,并使衍生冲击造成的破坏最小化。发生事故时适当的风险分析方法是协助应急响应的一种合理方法。在本文中,提出了一种基于细胞自动机的系统方法来进行应急响应中的风险分析。为实现细胞自动机转移功能,开发了三个通用规则,即扩散作用,转运作用和耗散作用。该方法考虑了人口密度和人口敏感性等多种社会因素,还考虑了因城市工业园区拥堵加剧和人口密度增加而导致的多米诺骨牌事故风险。此外,提出了两个风险指数,即个人风险和加权总风险,以帮助应急管理人员在应急响应过程中做出决策。个人风险对于规划疏散策略很有用,而汇总加权风险可以帮助应急管理人员根据每个脆弱区域的危险程度合理分配救援资源,并优化应急方案。

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