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An experimental study on plug-holing in tunnel fire with central smoke extraction

机译:中央烟雾萃取隧道火锚落的实验研究

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A series of fire experiments were carried out to investigate the plug-holing in the road tunnel with central smoke extraction system. The smoke layer height and the temperature under the exhaust vent as well as the velocity in the upstream and downstream are measured and analyzed. The results show that with the increase of smoke exhaust rate, no plug-holing, incompletely plug-holing and completely plug-holing will occur in turn for the smoke layer under the exhaust vent. The height of smoke layer under the vent increases rapidly, while the temperature decreases quickly with the increase of smoke exhaust rate, until they become stable when the completely plug-holing occurs. The velocity difference between upstream and downstream of the vent firstly increases with the larger smoke exhaust rate, and then it starts to decrease in the transitional region of plug-holing. Similarly, it becomes stable when the completely plug-holing occurs. When Fr is 1.2, no plug-holing occurs and when Fr is larger than 1.8, the completely plug-holing occurs. It is transitional state for plug-holing when 1.2 Fr 1.8.
机译:进行了一系列消防实验,以研究带中央烟雾提取系统的道路隧道中的插头。测量并分析烟雾层高度和排气通风口下的温度以及上游和下游的速度。结果表明,随着烟雾排气速率的增加,没有插头孔,不完全的插座和完全即插即孔将依次发生排气口下的烟雾层。通风口下的烟雾层的高度迅速增加,而温度随着烟雾排气速率的增加而迅速降低,直到它们发生完全插头孔时变得稳定。通风口上游和下游之间的速度差首先通过较大的烟雾排气速率增加,然后开始减小插座的过渡区域。类似地,当发生完全插头孔时,它变得稳定。当fr是& 1.2,不发生插头,当FR大于1.8时,发生完全插头。当1.2 +时,它是即插即孔的过渡状态。 FR& 1.8。

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