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Numerical prediction of envelope oscillation phenomena of shock-induced combustion

机译:冲击诱导燃烧包络振荡现象的数值预测

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The envelope oscillation phenomena of the shock-induced combustion is numerically investigated by a series of the projectile velocities. The zero-dimensional analysis shows that the period of hte envelope oscillation is essentially the low frequency oscillation coupled with the high frequency oscillations. As for the flowfield of the envelope oscillation, the numerical simualtion reveals the detailed oscillation mechanism. The reaction front is always away from the bow shock wave, and the detonable reaction front is never established. Therefore, the corrugated pattern of hte reaction boundary moves with fluid like a flowfield of the regular regime of the unsteady shock-induced combustion.
机译:通过一系列射弹速度对抗诱导燃烧的包络振荡现象。零维分析表明,HTE包络振荡周期基本上是与高频振荡耦合的低频振荡。至于包络振荡的流场,数值模拟揭示了详细的振荡机制。反应前方总是远离弓形冲击波,并未建立可释放的反应前线。因此,HTE反应边界的波纹图案与流体类似于不稳定的次触发燃烧的规则制度的流场。

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