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A Study on the Suppressing Technology of the Artificial Coal Gas Explosion

机译:人工煤气爆炸抑制技术研究

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This article have represented the mechanism of the suppressing explosion of the flammable gas and described the whole suppressing process accurately through the qualitative and quantitative analysis of suppressing explosion technology of the flammable gas. The results have practical significance to draw the protecting measures to reduce the occurrence of the disaster and minimize the personnel and property losses caused by the explosion chain reactions. Simultaneously, they can enrich and consummate the theories on explosion of gases. On the basis of analyses and a lot of experiments, we add nitrogen as the inertia media to explosive field to change the explosion limits of the poly-ingredient explosive gases and discuss the problem on the suppressing explosion of the poly-ingredient explosive artificial coal gases. The results indicate that nitrogen as a inertia media has shorten the value length of the explosive limits of the artificial coal gases, increased the lower explosive limit and decreased the flammability of the artificial coal gas. When the concentration reaches to a some value, the nitrogen may change the artificial coal gas to incombustible gas and suppress the explosion. So the safety problems on the poly-ingredient explosive gases are solved.
机译:本文通过对可燃气体抑制爆炸技术的定性和定量分析,阐述了抑制可燃气体爆炸的机理,并准确地描述了整个抑制过程。研究结果对于采取措施减少爆炸事故的发生,减少爆炸链反应所造成的人员和财产损失具有现实意义。同时,它们可以丰富和完善关于气体爆炸的理论。在分析和大量实验的基础上,将氮作为惯性介质添加到爆炸场中,以改变多成分爆炸性气体的爆炸极限,并讨论了抑制多成分爆炸性人工煤气爆炸的问题。 。结果表明,氮气作为惯性介质,缩短了人工煤气爆炸极限的值长,增大了爆炸下限,降低了人工煤气的可燃性。当浓度达到某个值时,氮气可能会将人造煤气变成不可燃气体并抑制爆炸。从而解决了多成分爆炸性气体的安全性问题。

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