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Experimental study on the synergistic inhibition effect of gas-liquid two phase medium on gas explosion

机译:气液两相介质对气体爆炸协同抑制作用的实验研究

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摘要

Experiments of synergistic inhibition effects by N-2 or CO2, and ultrafine water mist on methane/air explosion were carried out in a semi-confined transparent explosion vessel. The maximum flame propagation speed, maximum temperature, and maximum overpressure were found to be significantly decreased in the presence of a lower amount of gas-liquid two phase medium. It was also found that the CO2 had a better synergistic inhibiting effect with the ultrafine water mist than the N-2. In the present study, 14% N-2 or CO2 and 2 min mist spraying time were necessary to achieve better inhibition effects, such as declines of the maximum overpressure were 69.8% and 74.4%; and the declines of the maximum temperature were 43.4% and 51.9%; and the maximum flame propagation speed was between 2.13 m.s(-1) and 3.6 m.s(-1), respectively. The experimental results obtained from the present study could potentially facilitate the designs of explosion suppression engineering using water mist inerting systems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在半狭窄的透明爆炸容器中进行N-2或CO 2的协同抑制作用和甲烷/空气爆炸上的超细水雾试验。发现最大火焰传播速度,最高温度和最大过压在较低量的气液两相培养基存在下显着降低。还发现CO 2具有比N-2的超细水雾更好的协同抑制作用。在本研究中,需要14%N-2或CO 2和2分钟喷雾时间以获得更好的抑制作用,例如最大过压的下降为69.8%和74.4%;并且最高温度下降43.4%和51.9%;最大火焰传播速度分别在2.13米(-1)和3.6米(-1)之间。从本研究中获得的实验结果可能促进使用水雾惰性系统的爆炸抑制工程设计。 (c)2016 Elsevier Ltd.保留所有权利。

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