A Case Study on the Evacuation of People during a Fire in the Workshop of a Large Factory

Fire Pub Date : 2024-02-06 DOI:10.3390/fire7020047
Yuru Fan, Hao Cui, Jiawen Qin, Changcheng Liu, Que Huang
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Abstract

A workshop, as a crowded place, is quite easy to cause serious casualties and economic losses once there is a fire. In this paper, Pathfinder software was used to simulate fire emergency evacuation in a workshop of a large factory with building structural symmetry. According to the simulation results, several obstacles to the evacuation were discovered and further analyzed. The results showed that the main factors affecting the evacuation were the width of exits, the distribution of occupants and the effective evacuation width of stairs. Among them, only changing the width of exits had little influence on shortening evacuation time. While changing the effective evacuation width of stairs could greatly relieve the evacuation pressure, every increase of 0.5 m in the width of the staircase could shorten the evacuation time by 30.0 s. Meanwhile, the larger the number of people in high-rise buildings, the longer the evacuation time was. Therefore, the means of restricting people from entering the high-rise buildings in batches could be used to prevent personnel from being evacuated in time when a fire incident occurs.
大型工厂车间火灾中的人员疏散案例研究
车间作为人员密集场所,一旦发生火灾,极易造成严重的人员伤亡和经济损失。本文使用 Pathfinder 软件模拟了建筑结构对称的大型工厂车间的火灾紧急疏散。根据模拟结果,发现并进一步分析了影响疏散的几个障碍。结果表明,影响疏散的主要因素是出口宽度、人员分布和楼梯的有效疏散宽度。其中,只有改变出口宽度对缩短疏散时间影响不大。而改变楼梯的有效疏散宽度可以大大缓解疏散压力,楼梯宽度每增加 0.5 米,疏散时间可缩短 30.0 秒。因此,可以采用限制人员分批进入高层建筑的方法,防止火灾发生时人员来不及疏散。
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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