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DETONATION INITIATION AND PROPAGATION IN NONUNIFORM SUPERSONIC COMBUSTIBLE MIXTURES

机译:非均匀超音速可燃混合物中的爆炸起爆和传播

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Detonation initiation and propagation using a hot jet in nonuniform combustible mixtures was investigated through fine structure simulations. The Mach reflection on the upper wall resulted in the formation of the Mach stem finally near the interface, which was actually a local detonation wave. The continuous collisions of the lower triple-wave point between the lower wall and the upper triple-wave point played an important role in the successful detonation initiation. The dynamic stable structure propagated at the same speed as a whole in the nonuniform supersonic combustible mixtures. After the shutdown of the hot jet, a relatively new dynamic stable structure was formed eventually in the flow field. The hot jet not only could realize the detonation initiation, but also made an impact on the detonation propagation and the formation of the final dynamic stable structure.
机译:通过精细结构模拟研究了使用热喷嘴在不均匀可燃混合物中的爆炸起爆和传播。上壁上的马赫反射导致最终在界面附近形成马赫杆,这实际上是局部爆炸波。下部壁和上部三波点之间下部三波点的连续碰撞在成功起爆中起重要作用。动态稳定结构在非均匀超音速可燃混合物中以整体相同的速度传播。在热射流关闭后,最终在流场中形成了一个相对较新的动态稳定结构。热喷不仅能实现爆轰的起爆,而且对爆轰的传播和最终动态稳定结构的形成也产生了影响。

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