首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Numerical Simulation of the Evacuation Process and Smoke Propagation Due to a Fire in a Road Tunnel With Transverse Ventilation System
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Numerical Simulation of the Evacuation Process and Smoke Propagation Due to a Fire in a Road Tunnel With Transverse Ventilation System

机译:具有横向通风系统的道路隧道火灾引起的疏散过程和烟雾传播的数值模拟

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摘要

Fire accidents in road tunnels can form a great danger in the life of people if the evacuation process does not happen effectively. This paper introduces a numerical investigation of fire and evacuation analysis in a road tunnel and provides important insights into the conditions that people are exposed to during evacuation. The fire was assumed to originate from a bus with a fire size of 30 MW at the moment corresponding to the peak heat release rate. Results including smoke distribution, visibility distribution, paths of people during evacuation, people existence density, and people speed are presented and analyzed. One of the important findings of this paper is the estimation of the time available for people to evacuate safely before the approach of the smoke layer to the occupation zone causing deterioration of the visibility values. The discussion introduced a clarification of the connection between the time of exposure to smoke, people speed, and smoke propagation speed. Results showed that the time of exposure to smoke during evacuation can be significantly increased if the fire size is increased especially for persons located within 15 m from the fire location and take more than 2 min to take the decision of evacuation.
机译:如果疏散过程不能有效进行,公路隧道中的火灾事故可能会对人们的生命构成极大的危险。本文介绍了公路隧道火灾和疏散分析的数值研究,为人们在疏散过程中暴露的条件提供了重要的见解。假设火灾源于一辆公交车,在对应于峰值热释放率的时刻,火灾规模为30 MW。结果包括烟雾分布、能见度分布、疏散过程中的人员路径、人员存在密度和人员速度。本文的一个重要发现是,在烟雾层接近占领区导致能见度值恶化之前,估计人们安全疏散的可用时间。讨论澄清了暴露在烟雾中的时间、人的速度和烟雾传播速度之间的关系。结果表明,如果火灾规模增大,尤其是距离火灾位置15米以内的人员,疏散过程中暴露在烟雾中的时间会显著增加,并且需要2分钟以上才能做出疏散决定。

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