A Risk-based Model of Evacuation Route Optimization under Fire

Jing-jing Li , Hong-ya Zhu
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引用次数: 25

Abstract

Emergency evacuation plan plays a key role for fire risk management and successful evacuation. In this work, a topological model of evacuation routes is established and the corresponding matrix function is also proposed in order to evaluate evacuation ability. Simultaneously, risk assessment of fire scenarios is made based on numerical simulation. And on this basis, the variation laws of risk indicators such as temperature, thermal radiation, the concentration of toxic gas are analyzed in details and dynamic risk assessment of evacuation routes is made. Introducing the concept of equivalent routes, the scheme of the best route for evacuee at each location is the one along with the shortest time and minimal risk and suggested based on the Dijkstra algorithm. And then, one case is presented and result indicates that this model can aid people to avoid crowdedness and evacuate as soon as possible under fire accident. The risk-based model is also useful for the evacuation planning.

火力下基于风险的疏散路径优化模型
应急疏散计划是火灾风险管理和成功疏散的关键。本文建立了疏散路径的拓扑模型,并提出了相应的矩阵函数来评价疏散能力。同时,在数值模拟的基础上对火灾情景进行了风险评估。在此基础上,详细分析了温度、热辐射、有毒气体浓度等风险指标的变化规律,并对疏散路线进行了动态风险评估。引入等效路线的概念,在Dijkstra算法的基础上,给出每个地点疏散人员的最佳路线方案,即时间最短、风险最小的路线方案。最后给出了一个实例,结果表明该模型可以帮助人们在发生火灾事故时避免拥挤并尽快疏散。基于风险的模型对疏散规划也有帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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