CFD Simulation to Assess the Effects of Asphalt Pavement Combustion on User Safety in the Event of a Fire in Road Tunnels

Fire Pub Date : 2024-06-12 DOI:10.3390/fire7060195
C. Caliendo, Isidoro Russo
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Abstract

This paper presents a specific 3D computational fluid dynamics model to quantify the effects of the combustion of asphalt road pavement on user safety in the event of a fire in a bi-directional road tunnel. Since the consequences on tunnel users and/or rescue teams might be affected not only by the tunnel geometry but also by the type of ventilation and traffic flow, the environmental conditions caused by the fire in the tunnel under natural or longitudinal mechanical ventilation, as well as congested traffic conditions, were more especially investigated. The simulation results showed that the combustion of the asphalt pavement in the event of a 100 MW fire, compared to the case of a non-combustible road pavement, caused (i) an increase in smoke concentrations; (ii) a greater number of users exposed to the risk of incapacity to escape from the tunnel; (iii) a more difficult situation for the firefighters entering the tunnel upstream of the fire source in the case of natural ventilation; (iv) a higher probability of the domino effect for vehicles queued downstream of the fire when the tunnel is mechanically ventilated.
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进行 CFD 模拟以评估公路隧道发生火灾时沥青路面燃烧对用户安全的影响
本文介绍了一种特定的三维计算流体动力学模型,用于量化双向公路隧道发生火灾时沥青路面燃烧对用户安全的影响。由于对隧道使用者和/或救援队造成的后果不仅可能受到隧道几何形状的影响,还可能受到通风类型和交通流量的影响,因此对隧道内自然通风或纵向机械通风以及拥堵交通条件下火灾造成的环境条件进行了更深入的研究。模拟结果表明,与不可燃路面相比,在发生 100 兆瓦火灾时,沥青路面的燃烧会导致:(i) 烟雾浓度增加;(ii) 更多用户面临无法从隧道逃生的风险;(iii) 在自然通风的情况下,进入火源上游隧道的消防人员处境更加困难;(iv) 在机械通风的情况下,火灾下游排队车辆出现多米诺骨牌效应的概率更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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