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Propagation of blast waves from a bursting vessel with internal hydrogen-air deflagration

机译:来自爆破容器的爆炸波在内部氢气与空气爆燃之间的传播

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Most studies on blast waves generated by gas explosions have focused on gas explosions occurring in open spaces. However, accidental gas explosions often occur in confined spaces and the blast wave generates from a bursting vessel as a result of an increase in pressure caused by the gas explosion. In this study, blast waves from bursting plastic vessels in which gas explosions occurred are investigated. The flammable mixtures used in the experiments were hydrogen-air mixtures at several equivalence ratios and a stoichiometric methane-air mixture. The overpressures of the blast waves were generated by venting high-pressure gas in the enclosure and volumetric expansion with a combustion reaction. The measured intensities of the blast waves were greater than the calculated values resulting from high-pressure bursting without a combustion reaction. The intensities of the blast waves resulting from the explosions of hydrogen-air mixtures were much greater than those of the methane-air mixture. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:大多数关于瓦斯爆炸产生的爆炸波的研究都集中在露天场所发生的瓦斯爆炸上。但是,由于密闭空间中经常发生意外的气体爆炸,并且由于气体爆炸引起的压力增加,爆炸波从破裂的容器中产生。在这项研究中,研究了发生气体爆炸的爆炸性塑料容器中的爆炸波。实验中使用的易燃混合物是几种当量比的氢气-空气混合物和化学计量的甲烷-空气混合物。爆炸波的超压是通过排出外壳中的高压气体并通过燃烧反应进行体积膨胀而产生的。测得的爆炸波强度大于没有燃烧反应的高压爆裂所产生的计算值。氢-空气混合物爆炸产生的爆炸波的强度比甲烷-空气混合物爆炸的强度大得多。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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