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Analysis of the Hsuehshan Tunnel Fire in Taiwan

机译:台湾雪山隧道火灾分析

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This paper focused on analyzing the Hsuehshan Tunnel Fire in Taiwan, which occurred from a bus fire in the afternoon of May 7, 2012 and caused two death and 34 injuries. Major object damages were reviewed and CCTV records were investigated toward understanding the fire temperature, smoke layers and situations of people in the tunnel refuge area (Fire Scenarios Analysis & Egress/Rescue Strategies of the 2012 Hsuehshan Tunnel Fire in Taiwan, MOTC, Taiwan, Jan., 2016.). Data collected from the fire scene were fed into fire scene reconstruction using CFD method (i.e., Fire Dynamics Simulators - FDS). It reveals that the fire temperature reached 800-900 degrees C and HRR was around 25-30 MW, which are consistent with the reviews of the incident and experiment data. Moreover, the fire temperature obtained from the CFD method when compared with experiment data is more reasonable. It is considered lift-threatening in terms of visibility, temperature and radiant heat flux for both road users and self-defense fire/rescue team when the fire heat reaches 10 MW. It was also reasoned that the fire spread through exit holes on the bus roof and heat was carried by the ventilation flow, leading to serious damage of lighting objects and cable traps above the bus. This study also suggests that the best option for people encounter tunnel fire is to leave their vehicles immediately and evacuate toward upstream direction of the fire. For those who are in the downstream of the fire, they should use the exit doors on the connection tunnel to escape the incident.
机译:本文着重分析了台湾的雪山隧道火灾,该火灾是由2012年5月7日下午的公共汽车大火引起的,造成2人死亡和34人受伤。审查了主要物体损坏并调查了CCTV记录,以了解隧道避难区的火灾温度,烟层和人们的状况(2012年,台湾交通部,台湾雪山隧道火灾的火灾场景分析和逃生/救援策略) 。,2016.)。使用CFD方法(即Fire Dynamics Simulators-FDS)将从火灾现场收集的数据输入到火灾现场重建中。结果表明,火灾温度达到了800-900摄氏度,HRR在25-30兆瓦左右,这与事故征候和实验数据的回顾是一致的。此外,与实验数据相比,通过CFD方法获得的着火温度更为合理。当火热达到10兆瓦时,对于道路使用者和自卫消防/救援队而言,在能见度,温度和辐射热通量方面均被视为威胁升力。也有理由认为,火势通过公交车顶板上的出口孔蔓延,热量由通风流带走,从而严重损坏了公交车上方的照明物体和电缆阱。这项研究还表明,遇到隧道火灾的人的最佳选择是立即离开车辆并朝着火灾的上游方向撤离。对于那些在火灾下游的人,应该使用连接隧道上的出口门逃生。

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