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Experimental study on the synergistic inhibition effect of nitrogen and ultrafine water mist on gas explosion in a vented duct

机译:氮气和超细水雾对通风管道内气体爆炸协同抑制作用的实验研究

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In this study, in order to research the synergistic inhibition effect of nitrogen and ultrafine water mist on gas explosion in a vented duct, a semi-confined transparent chamber was designed with the size of 120 x 120 x 840 mm, and the experiments were carried out with stoichiometric methane/air premixed mixture (fraction of methane: 9.5%), adding different fractions of nitrogen and ultrafine water mist. The experimental results showed the following: The combination of nitrogen and ultrafine water mist had a synergistic inhibiting effect on methane/air explosion, which was preferable to the single use of any kind. With the increase of spraying time of water mist and fraction of nitrogen, the initial shape of the explosion flame became snakelike, and at the same time the peak flame propagation speed and peak overpressure decreased significantly. When the nitrogen fraction was increased to 10% and the mist spraying time was increased to 2min, synergistic inhibiting effect on overpressure was high efficient. However, with the increase of spraying time of water mist and fraction of nitrogen going on, the amount of increase of explosion inhibition efficiency was gradually reduced. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了研究氮气和超细水雾对通风管道内气体爆炸的协同抑制作用,设计了半封闭透明腔室,其尺寸为120 x 120 x 840 mm,并进行了实验用化学计量的甲烷/空气预混合混合物(甲烷的分数:9.5%)蒸馏出,加入不同比例的氮气和超细水雾。实验结果表明:氮气和超细水雾的组合对甲烷/空气爆炸具有协同抑制作用,优于任何一种一次性使用。随着水雾喷射时间和氮含量的增加,爆炸火焰的初始形状呈蛇形,同时峰值火焰传播速度和峰值超压明显降低。当氮含量增加到10%,喷雾时间增加到2min时,对超压的协同抑制作用非常有效。但是,随着水雾喷雾时间的增加和氮含量的增加,防爆效率的增加量逐渐减少。 (C)2016 Elsevier Ltd.保留所有权利。

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