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Fire Emergency Evacuation Simulation of a shopping mall using Fire Dynamic Simulator (FDS)

机译:使用Fire Dynamic Simulator(FDS)对购物中心的火灾紧急疏散进行仿真

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Fire accident in a shopping mall, garments factory and other labor intensive industries nowadays has become a common incident in Bangladesh and poses a great threat to life, facilities and economy of our country. In this work, fire and evacuation simulation was performed for a single stored shopping complex utilizing computational fluid dynamic techniques. Fire Dynamic Simulator with evacuation (FDS+Evac) software was used to simulate a shopping mall fire and study the effects of fire on the emergency egress process of people. The shopping mall of area 64 m 2 comprises of seven rooms with a pool fire at the center of the mall is modeled for simulation. The total evacuation time (TET) for a fixed population density were estimated with the change of heat release rate, soot yield, soot density and the design pattern or geometry of shopping mall. The evacuation of agents in different time and different design pattern of the mall has been assessed using the data obtained from the simulation. FDS+Evac provides an integrating platform where the interaction between fire growth and evacuees can be taken into account by simultaneous simulation allowing a full coupling of the fire conditions and human behavior. This makes FDS is an effective tool for simulating large and high density crowds where the movement dynamics of evacuees is affected by the crowd pressure. Full scale fire experiment is often quite difficult to study the fine and crowds evacuation behavior. This paper illustrates a promising application of fire dynamic simulator (FDS+Evac) for fire and evacuation modeling to predict the total evacuation time. Journal of Chemical Engineering, Vol. 30, No. 1, 2017: 32-36
机译:如今,购物中心,服装厂和其他劳动密集型产业中的火灾事故已成为孟加拉国的常见事件,对我国的生命,设施和经济构成了巨大威胁。在这项工作中,利用计算流体动力学技术对单个存储的购物综合楼进行了火灾和疏散模拟。使用带有疏散功能的火灾动态模拟器(FDS + Evac)软件来模拟购物中心火灾,并研究火灾对人员紧急出口过程的影响。面积为64 m 2的购物中心由七个房间组成,在购物中心的中心设有水池壁炉,用于模拟。固定人口密度下的总疏散时间(TET)随放热率,烟灰产量,烟灰密度以及购物中心的设计模式或几何形状的变化而估算。使用从仿真中获得的数据,评估了商场不同时间和不同设计模式下的人员疏散情况。 FDS + Evac提供了一个集成平台,在该平台中,可以通过同时进行模拟来考虑火灾增长与撤离人员之间的相互作用,从而实现火灾状况与人类行为的完全耦合。这使得FDS成为模拟高密度人群的有效工具,在这种人群中,疏散人员的运动动态受人群压力的影响。大规模火灾实验通常很难研究罚款和人群疏散行为。本文说明了火灾动态模拟器(FDS + Evac)在火灾和疏散模型中预测总疏散时间的有希望的应用。化学工程杂志,卷。 30,No. 1,2017:32-36

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