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On plasma mitigation of shock waves

机译:关于等离子体减轻冲击波

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摘要

Experiments were conducted in a Mach 2.5 wind tunnel to explore the modification effect on the shock wave structure by a plasma spike generated by an on-board 60 Hz electric discharge in front of a 60 degrees cone-shaped model, which was used as a shock wave generator. Modification of the shock by the plasma spike from an attached conic shock into a highly curved shock structure, which has increased shock angle and also appears in diffused form, is demonstrated. Due to the cyclic nature of the generated plasma an unsteady shock motion during one discharge period was observed. As shown in a sequence with increasing discharge intensity, the shock in front of the model moves upstream to become detached with increasing standoff distance from the model and with increasing dispersion in the spatial distribution of the shock front. Experimental results exclude the heating effect as a possible cause of the observed shock wave modification. A theory also using a cone model as the shock wave generator is presented to explain the observed plasma effect on the shock wave. Analysis shows that the plasma spike can effectively deflect the incoming flow before the flow reaches the cone model; such a flow deflection modifies the structure of the shock wave generated by the cone model from conic shape to a curved one. The shock front moves upstream with a larger shock angle, consistent with the experimental results.
机译:在Mach 2.5风洞中进行了实验,研究了在60度圆锥形模型前面的板载60 Hz放电产生的等离子体尖峰对等离子体冲击波结构的改变作用,该模型被用作冲击波。波发生器。证明了等离子体尖峰将冲击从附着的圆锥形冲击转变为高度弯曲的冲击结构,该结构具有增大的冲击角并且也以扩散形式出现。由于产生的等离子体的循环特性,在一个放电期间观察到了不稳定的冲击运动。如顺序所示,随着放电强度的增加,模型前部的冲击向上游移动,随着与模型之间的间隔距离增加以及冲击前部空间分布的分散性增加而脱离。实验结果排除了加热效应,可能是观察到的冲击波改变的可能原因。提出了一种也使用圆锥模型作为冲击波发生器的理论来解释观察到的等离子体对冲击波的影响。分析表明,血浆尖峰可以在流体到达圆锥模型之前有效地偏转进入的流体。这种流动偏转将由圆锥模型产生的冲击波的结构从圆锥形变为弯曲的。冲击前沿以较大的冲击角向上游移动,与实验结果一致。

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