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Detonation Propagation Through Ducts in a Pulsed Detonation Engine

机译:脉冲爆震发动机中通过管道的爆震传播

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A study of configurations to allow a consistent and predictable transition of a detonation from one detonation tube to another is presented. Development of a continuously operating pulsed detonation engine (PDE) without a high energy ignition system or a deflagration-to-detonation transition (DDT) device will increase engine efficiency, reduce cost, improve performance, and reduce weight. The intent of this study was to minimize energy losses of a detonation wave in order to directly initiate another detonation wave. Detonation tube fill fraction, purge fraction, equivalence ratio, cross-over length and cross-over geometry were varied to determine their effect on direct initiation via a cross-over tube. Velocities at or above the upper Chapman-Jouguet (C-J) velocity point are desired and considered successful detonations. It was found that a cross-over tube with a "U" shaped geometry and a width at least 75% of the initiated tube's width provided the best conditions for direct initiation.
机译:提出了一种配置的研究,以允许爆炸从一个引爆管到另一个引爆管的一致且可预测的过渡。没有高能点火系统或爆燃-爆轰过渡(DDT)装置的连续运行脉冲爆震发动机(PDE)的开发将提高发动机效率,降低成本,提高性能并减轻重量。这项研究的目的是使爆炸波的能量损失最小,以便直接引发另一个爆炸波。改变爆轰管的填充分数,吹扫分数,当量比,跨接长度和跨接几何形状,以确定它们对通过跨接管直接引发的影响。希望达到或高于上Chapman-Jouguet(C-J)速度点的速度,并认为是成功的爆炸。已发现具有“ U”形几何形状且宽度至少为引爆管宽度的75%的交叉管为直接引爆提供了最佳条件。

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