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Simulation of smoke from a burning vehicle and pollution levels caused by traffic jam in a road tunnel

机译:模拟行车隧道中交通拥堵引起的燃烧车辆冒烟和污染水平

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Detailed analyses of smoke movement from a burning vehicle in a road tunnel have been carried out for the westbound Melbourne City Link tunnel. The time-averaged equations for velocity, pressure, temperature, and mass fraction of emissions were solved for transient condition using the CFD software FLUENT 6.0. For the analysis, a burning bus was assumed to release an equivalent energy of burning 500 1 of diesel in 6 min, with vehicles upstream of the fire at a standstill. On the other hand, the vehicles downstream of the fire had enough time to escape from the tunnel through the exit portal. Due to the action of jet fans, most of the smoke was pushed downstream of the fire. The smoke had also dispersed about 55 m upstream of the fire, putting the passengers in this region at great risk. The emissions released from the vehicles in the jam, with their engines running, also posed a threat to human health. Within 8 min after the fire had started, the mass concentrations of O_2, CO_2 and CO were in the ranges of 0.12-0.15, 0.08-0.11 and 0.0006-0.0014, respectively. Therefore, quick evacuation of the passengers is essential in the event of a fire in the tunnel.
机译:已对墨尔本市区连接线隧道西行进行了详细分析,分析了公路隧道中燃烧着的车辆产生的烟雾。使用CFD软件FLUENT 6.0求解了瞬时条件下的速度,压力,温度和排放物质量分数的时间平均方程。为了进行分析,假设一辆燃烧的公交车在6分钟内释放了相当于燃烧500 1柴油的等效能量,而火灾上游的车辆停滞不前。另一方面,火灾下游的车辆有足够的时间通过出口从隧道中逃脱。由于喷气风扇的作用,大部分烟雾被推向火的下游。烟雾还散布在大火上游约55 m,使该地区的乘客面临极大危险。堵塞发动机中的车辆以及发动机运转时释放的废气也对人体健康构成威胁。火灾开始后8分钟内,O_2,CO_2和CO的质量浓度分别为0.12-0.15、0.08-0.11和0.0006-0.0014。因此,在隧道着火的情况下,迅速疏散乘客至关重要。

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