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NUMERICAL STUDY ON SECURING EVACUATION ENVIRONMENT UNDER FIRE AT AN INCLINED TUNNEL PART

机译:倾斜隧道火灾下疏散环境的数值研究

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摘要

We have experienced severe fire accidents in tunnels, such as in the Mont Blanc Tunnel or Tauern Tunnel. These accidents triggered a series of studies for securing safe environments in case of tunnel fire. Plenty of research has been done so far, experimentally or numerically, on the phenomena of tunnel fire, and the behavior of smoke and heat has been discussed for the flat part of the tunnel. At the inclined part, however, the analysis is not sufficient, and it is necessary to be studied. The authors estimated the behavior of heat and smoke by fire at an inclined tunnel part by means of a 3-D numerical analysis. The analysis was done utilizing a freeware, named "FrontFlow/red" developed by a group at Tokyo University. The simulation results give a detailed flow field as well as heat and smoke distribution, which can be used to establish tunnel facilities as ventilation systems and their control, so that safe environments can be attained. It is also available to decide the interval of cross passages for evacuation.
机译:我们在Mont Blanc隧道或Tauern隧道等隧道中发生了严重的火灾事故。这些事故引发了一系列研究,以确保在发生隧道火灾时确保安全的环境。迄今为止,已经通过实验或数值方法对隧道着火现象进行了大量研究,并且已经讨论了隧道平坦部分的烟和热行为。然而,在倾斜部分,分析是不够的,并且有必要进行研究。作者通过3D数值分析估算了倾斜隧道部分因火而产生的热量和烟雾的行为。分析是使用东京大学一个小组开发的名为“ FrontFlow / red”的免费软件完成的。仿真结果给出了详细的流场以及热量和烟气的分布,可用于建立隧道设施作为通风系统及其控制,从而可以实现安全的环境。也可以确定疏散通道的间隔。

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