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Three-dimensional simulation of combustion, detonation and deflagration to detonation transition processes

机译:燃烧,爆炸和爆燃的三维模拟,以爆轰过渡过程

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The paper presents results of numerical and experimental investigation of mixture ignition and detonation onset in shock wave reflected from inside a wedge. Contrary to existing opinion of shock wave focusing being the mechanism for detonation onset in reflection from a wedge or cone, it was demonstrated that along with the main scenario there exists a transient one, under which focusing causes ignition and successive flame acceleration bringing to detonation onset far behind the reflected shock wave. Several different flow scenarios manifest in reflection of shock waves all being dependent on incident shock wave intensity: reflecting of shock wave with lagging behind combustion zone, formation of detonation wave in reflection and focusing, and intermediate transient regimes. Comparison of numerical and experimental results made it possible to validate the developed 3-D transient mathematical model of chemically reacting gas mixture flows incorporating hydrogen - air mixtures.
机译:本文提出了在楔形内部反射的冲击波中混合物点火和爆炸发作的数值和实验研究的结果。与存在的冲击波的现有意见,聚焦是从楔形或锥体反射中爆炸发作的机制,证明了与主要场景一起存在瞬态一个,在这种情况下,聚焦导致点火和连续的火焰加速会导致爆炸发作引起点火和连续的火焰加速度远远落后于反射的冲击波。几种不同的流程表现在冲击波的反射中依赖于入射冲击波强度:反射燃烧区后面的冲击波,反射和聚焦中的爆轰波的形成,中间瞬态瞬态。数值和实验结果的比较使得可以验证结合氢气混合物的化学反应气体混合物流动的开发的3-D瞬态数学模型。

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