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Experimental Analysis on the Critical smoke exhaust rate for Large Vent in Tunnel concerning for Plug-holing Phenomenon

机译:隧道隧道大孔临界排气速率的实验分析

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For different combinations of fire heat release rate and longitudinal velocity, a series of experimental tests concerning for plug-holing phenomenon have been carried out on a 1/20 reduced scale model tunnel. Firstly the smoke temperature distribution beneath the tunnel ceiling was given out. And based on the temperature profiles of pile A, B and C, the air-smoke interfaces for three locations were accordingly labeled and flow patterns below the vent were given out. Secondly with the augment of the smoke exhaust rate, the smoke layer decreased. For the case (Q=4.68MW, v=0.33m/s), the stability of upper smoke layer had been broken, when the smoke flow rate increased to 58m3/s corresponding to plug-holing phenomenon. Lastly for different combinations of fire heat release rate and longitudinal velocity, the critical smoke exhaust rate can be obtained. And a simple dimensionless correlation, suitable for practical application, was given out.
机译:对于灭火率和纵向速度的不同组合,在1/20减小的模型隧道上进行了一系列关于插座现象的实验测试。首先,给出了隧道天花板下方的烟雾温度分布。并基于桩A,B和C的温度曲线,因此,发出通风口下方的三个位置的空气烟雾接口。其次,随着烟雾排气速率的增强,烟雾层减少。对于这种情况(Q = 4.68mW,v = 0.33m / s),当烟雾流速增加到相应的插座现象的烟雾流量增加到58m3 / s时,上烟层的稳定性已被破坏。最后,对于灭火率和纵向速度的不同组合,可以获得临界烟气排气速率。发出了一种简单的无量纲相关性,适合实际应用。

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