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Fire Risk Analysis of Subway Station Fire on Different Ventilation Modes

机译:不同通风方式下地铁车站火灾的火灾风险分析

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The subway fire increases with the development of city development. The subway fire accidents gradually increase, which cause great casualties and property losses. In order to study this problem, the main fire risk source was studied on experiment. Peak temperature of platform roof can reach to 170??? on Y=0 m, and most passengers will die within short time on natural ventilation condition as no any countermeasure is applied. The low visibility is 0.5m, and which can make evacuation speed descend to 0.8m/s. Peak temperature of platform roof only reaches to 40??? on Y=0m when mechanical smoke exhaust system were used to exhaust smoke in fire. The visibility and smoke movement velocity is larger than those on natural ventilation condition. The results show that the mechanical smoke exhaust system is important on subway fire, and which provide an effective method to control smoke.
机译:地铁火灾随着城市发展的发展而增加。地铁火灾事故逐渐增多,造成重大人员伤亡和财产损失。为了研究这个问题,对主要的火灾危险源进行了实验研究。平台屋顶的最高温度可以达到170℃。在Y = 0 m时,由于未采取任何对策,大多数乘客将在自然通风条件下在短时间内死亡。低能见度为0.5m,可使疏散速度降至0.8m / s。平台屋顶的峰值温度仅达到40 ???当机械排烟系统用于排烟时,Y = 0m。能见度和烟雾移动速度要大于自然通风条件下的能见度和烟雾移动速度。结果表明,机械排烟系统对地铁火灾起着重要作用,为控制烟雾提供了有效的手段。

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