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The Influence of subway climatology on gas dispersion and the effectiveness of guided evacuations in a complex subway station

机译:复杂地铁站中地铁气候对气体扩散和引导疏散效果的影响

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摘要

This paper discusses a strategy that integrates data from tracer gas experiments with results from pedestrian simulation software in the evaluation of different evacuation procedures for subway stations in response to a fire or a terrorist attack with chemical, biological, radiological, nuclear and enhanced conventional weapons (CBRNE). The study demonstrates that by combining the two data sets a greater understanding of the impact of different evacuations routes on an evacuee’s health is gained. It is shown that by controlling the routes pedestrians would use to exit a subway station, the number of fatalities and evacuees with long term health issues can be reduced. It is highlighted that a dynamic evacuation guiding system based on subway climatology would take into account the source of the toxin, the resulting dispersal of gas, smoke, etc. and the subway climatology at the time. In doing so, it would be possible to identify the most endangered areas and guide passengers via an adaptive escape route using audio and visual techniques. Information on the evolution of the emergency situation could also simultaneously be relayed back to the rescue forces to help to plan the rescue and evacuation procedures and optimise the deployment of the search and rescue teams.
机译:本文讨论了一种策略,该策略将示踪气体实验的数据与行人模拟软件的结果相结合,以评估地铁站不同的疏散程序,以应对发生火灾或恐怖袭击的化学,生物,放射性,核武器和增强型常规武器( CBRNE)。该研究表明,通过结合这两个数据集,可以更好地了解不同撤离路线对撤离人员健康的影响。结果表明,通过控制行人离开地铁站所使用的路线,可以减少长期健康问题造成的死亡和疏散人数。需要强调的是,基于地铁气候学的动态疏散指导系统将考虑毒素的来源,由此产生的气体,烟气等的扩散以及当时的地铁气候学。这样,有可能识别出最危险的区域,并使用视听技术通过自适应逃生路线引导乘客。有关紧急情况演变的信息也可以同时传递给救援部队,以帮助计划救援和疏散程序并优化搜救团队的部署。

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