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Fire safety assessment of open wide gangway underground trains in tunnels using coupled fire and evacuation simulation

机译:火灾与疏散模拟相结合的隧道宽阔通道地下火车的消防安全评估

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摘要

A new type of train configuration, known as Open Wide Gangway (OWG) is becoming popular, particularly in underground environments. Previous fire modelling analysis demonstrated that the OWG configuration was considered safe as or safer than conventional configurations as it reduced the likelihood of flashover. However, these studies have ignored the impact on evacuation of the spread of fire effluent to non-fire cars. Here we explore the fire safety offered by conventional and OWG configurations using coupled fire and evacuation modelling techniques. Two tunnel train situations are considered; one in which the car side doors are available for evacuation (train in a wide tunnel) and the other in which only the end cab doors are available (train in a narrow tunnel). Two population configurations are considered, fully and half loaded. Two ignition sources are also considered, one representing an accidental fire and the other an arson fire. The analysis demonstrates that while the OWG configuration may produce improved fire performance in the car of fire origin compared to the conventional configuration, if the interaction of the fire effluent with the evacuating passengers is considered, the OWG configuration results in a significantly greater number of casualties in virtually all the scenarios considered.
机译:一种新型的火车配置,称为开放式宽阔通道(OWG),正变得越来越流行,尤其是在地下环境中。先前的火灾建模分析表明,与传统配置相比,OWG配置被视为安全或比传统配置更安全,因为它减少了跳火的可能性。但是,这些研究忽略了将排泄物扩散到非消防车上对撤离的影响。在这里,我们使用耦合的火灾和疏散建模技术探索常规和OWG配置提供的火灾安全性。考虑了两种隧道列车情况;一种是可用于疏散轿厢侧门(在宽阔的隧道中训练),另一种仅可使用末端驾驶室门(在狭窄的隧道中训练)。考虑两种填充配置,完全加载和一半加载。还考虑了两个点火源,一个代表意外起火,另一个代表纵火。分析表明,尽管与常规配置相比,OWG配置可以在起火的汽车中提高防火性能,但如果考虑到废水与疏散乘客的相互作用,则OWG配置会导致大量人员伤亡在几乎所有考虑的场景中。

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