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Detonation-to-shock wave transmission at a contact discontinuity

机译:在接触不连续的情况下爆炸 - 冲击波传输

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The one-dimensional interaction of a detonation wave with a contact discontinuity was investigated analytically and experimentally for oxyhydrogen detonations. The analytical and experimental results showed that the transmitted shock through the contact surface and into a non-combustible gas can either be amplified or attenuated depending on the reflection type at the contact surface and on the ratio of acoustic impedance across it. Experiments were performed with a detonation-driven shock tube facility to determine the transmitted shock velocity into a non-combustible He/air mixture. The oxyhydrogen equivalence ratio in the detonation section was varied from 0.5 to 1.5, and the driven section He mole fraction was varied from 0.0 to 1.0 to test a broad range of acoustic impedance ratios ranging from approximately 0.36 to 1.69. The analytical results were shown to have acceptable agreement with the measured transmitted shock wave velocity in the case of a reflected rarefaction from the contact surface. Additionally, the results indicated that the detonation wave reaction zone properties could have an important role that influences the transmitted shock properties in the case of a reflected shock from the contact surface.
机译:分析和实验研究了爆炸波与接触不连续性的次尺寸相互作用用于氢爆炸。分析和实验结果表明,通过接触表面和进入不可燃气体的透射冲击可以根据接触表面处的反射型和对其上的声阻抗的比率来放大或衰减。用爆炸驱动的冲击管设施进行实验,以将透射的冲击速度确定为非可燃的HE /空气混合物。爆轰部分中的氢因等比在0.5至1.5之间变化,并且从0.0至1.0变化了从动部分,以测试范围为约0.36至1.69的宽范围的声阻抗比。显示分析结果与来自接触表面的反射稀疏的情况下的测量的透射冲击波速度具有可接受的吻合。另外,结果表明,爆炸波反应区特性可以具有影响来自接触表面反射冲击的透射的冲击特性的重要作用。

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