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Experimental investigation on influence of smoke venting velocity and vent height on mechanical smoke exhaust efficiency

机译:排烟速度和排烟高度对机械排烟效率影响的实验研究

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摘要

A set of burning experiments were conducted to investigate the influence of smoke vent height and exhausting velocity on mechanical smoke exhausting efficiency. Results have shown that the smoke exhausting process becomes more efficient due to the increased smoke vent height and the decreased exhausting velocity, which eliminate the plug-holing issue with fewer disturbances on the smoke layer interface. For each certain exhausting velocity, there is a critical value of distance between the vent and the bottom of the smoke layer. When the distance is less than the critical value, the smoke exhausting is inefficient, and the efficiency decreases sharply as the distance decreases. Contrarily, when the distance is greater than the critical value, a good efficiency can be acquired and the exhausted smoke increased relatively slowly as the distance increases. A critical Froude number, proposed by Hinkley to predict the onset of plug-holing effect in gravity venting systems, was validated in the experiments. However, the experimental results indicate that in the tests without the plug-holing, the fresh air entrained due to smoke exhausting is up to 48% of the mechanical exhausting rate.
机译:进行了一系列燃烧实验,以研究排烟口高度和排烟速度对机械排烟效率的影响。结果表明,由于排烟口高度的增加和排烟速度的降低,排烟过程变得更加有效,从而消除了烟孔界面上的扰动更少的堵塞孔问题。对于每个特定的排气速度,通风口和烟层底部之间的距离都有一个临界值。当距离小于临界值时,排烟效率低下,并且效率随着距离的减小而急剧下降。相反,当距离大于临界值时,可以获得良好的效率,并且随着距离的增加,排出的烟雾相对缓慢地增加。实验验证了辛克利提出的用于预测重力通风系统中塞孔效应开始的临界弗洛德数。然而,实验结果表明,在没有塞孔的测试中,由于排烟而夹带的新鲜空气高达机械排量的48%。

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