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Impact of location of jet fan on airflow structure in tunnel fire

机译:射流风机位置对隧道火灾气流结构的影响

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Airflow structure and its magnitude are important for smoke management in longitudinally ventilated tunnels. This paper presents a sensitivity study by Computational Fluid Dynamics technique, which considers different dimensions, orientations and the natures of fire source. Its impact on the airflow velocity and temperature distribution is investigated with various locations of fan group activated. A theoretical correlation between the distance of active fan group from the fire source and the upstream velocity is proposed individually for pool fire and solid fire. It reveals that the nature of the fire source imposes adverse effect on the upstream air velocity and the airstream pattern over the entire tunnel. The upstream velocity remains fairly constant when the active fan group is located 200 m or beyond from a vehicle fire that occupies a significant cross-sectional area of tunnel.
机译:气流结构及其强度对于纵向通风隧道的烟气管理非常重要。本文介绍了通过计算流体动力学技术进行的敏感性研究,该研究考虑了不同尺寸,方向和火源的性质。通过激活风扇组的不同位置来研究其对气流速度和温度分布的影响。对于池火和固体火,分别提出了主动风机组距火源的距离与上游速度之间的理论关系。结果表明,火源的性质对整个隧道的上游气流速度和气流模式产生了不利影响。当主动风扇组位于占隧道较大横截面的车辆火灾200 m或以上时,上游速度保持相当恒定。

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