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The rate of pressure rise of gaseous propylene-air explosions in spherical and cylindrical enclosures

机译:球形和圆柱形外壳中气态丙烯-空气爆炸的压力上升速率

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The maximum rates of pressure rise of propylene-air explosions at various initial pressures and various fuel/oxygen ratios in three closed vessels (a spherical vessel with central ignition and two cylindrical vessels with central or with top ignition) are reported. It was found that in explosions of quiescent mixtures the maximum rates of pressure rise are linear functions on total initial pressure, at constant initial temperature and fuel/oxygen ratio. The slope and intercept of found correlations are greatly influenced by vessel's volume and shape and by the position of the ignition source — factors which determine the amount of heat losses from the burned gas in a closed vessel explosion. Similar data on propylene-air inert mixtures are discussed in comparison with those referring to propylene-air, revealing the influence of nature and amount of inert additive. The deflagration index K_G of centrally ignited explosions was also calculated from maximum rates of pressure rise.
机译:报告了在三个密闭容器(带中心点火的球形容器和带中心或顶部点火的两个圆柱形容器)中,在各种初始压力和各种燃料/氧气比下,丙烯-空气爆炸的最大压力上升速率。已经发现,在静态混合物爆炸中,在恒定的初始温度和燃料/氧气比的情况下,最大升压速率是总初始压力的线性函数。所发现的相关性的斜率和截距受容器的体积和形状以及点火源的位置的很大影响,这些因素决定了密闭容器爆炸中来自燃烧气体的热量损失量。与涉及丙烯-空气的那些相比,讨论了关于丙烯-空气惰性混合物的相似数据,揭示了惰性添加剂的性质和量的影响。中央点火爆炸的爆燃指数K_G也由最大压力上升率计算得出。

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