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Estimating the Flow Rate Capacity of an Overturned Rail Carriage End Exit in the Presence of Smoke

机译:在有烟气的情况下估算翻倒的铁路运输出站出口的流量能力

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摘要

While incidents requiring the rapid egress of passengers from trains are infrequent, perhaps the most challenging scenario for passengers involves the evacuation from an overturned carriage subjected to fire. In this paper we attempt to estimate the flow rate capacity of an overturned rail carriage end exit. This was achieved through two full-scale evacuation experiments, in one of which the participants were subjected to non-toxic smoke. The experiments were conducted as part of a pilot study into evacuation from rail carriages. In reviewing the experimental results, it should be noted that only a single run of each trial was undertaken with a limited — though varied — population. As a result it is not possible to test the statistical significance of the evacuation times quoted and so the results should be treated as indicative rather than definitive. The carriage used in the experiments was a standard class Mark IID which, while an old carriage design, shares many features with those carriages commonly found on the British rail network. In the evacuation involving smoke, the carriage end exit was found to achieve an average flow rate capacity of approximately 5.0 persons/min. The average flow rate capacity of the exit without smoke was found to be approximately 9.2 persons/min. It was noted that the presence of smoke tended to reduce significantly the exit flow rate. Due to the nature of the experimental conditions, these flow rates are considered optimistic. Finally, the authors make several recommendations for improving survivability in rail accidents.
机译:尽管很少发生需要旅客迅速离开火车的事件,但对于旅客来说,最具挑战性的情况是从发生火灾的翻车车厢中撤离。在本文中,我们试图估计翻倒的铁路滑车末端出口的流量能力。这是通过两个全面的疏散实验来实现的,其中一个参与者被接受了无毒烟雾。实验是对从铁路车厢撤离进行的试验研究的一部分。在审查实验结果时,应注意的是,每个试验仅进行了一次有限的人口尽管数量有限(尽管不同)。结果,不可能检验所引用的疏散时间的统计显着性,因此应将结果视为指示性的而不是确定的。实验中使用的车架是标准的Mark IID类,尽管它是一种老式的车架设计,但与英国铁路网络上常见的那些车架具有许多共同之处。在涉及烟雾的疏散中,发现滑架末端出口的平均流量约为5.0人/分钟。发现无烟出口的平均流量为大约9.2人/分钟。注意到烟雾的存在倾向于显着降低出口流速。由于实验条件的性质,这些流速被认为是乐观的。最后,作者提出了一些建议,以提高铁路事故的生存能力。

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