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首页> 外文期刊>The Open Plasma Physics Journal >Nonthermal Plasma Mitigation of Shock Wave in Supersonic Airflow
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Nonthermal Plasma Mitigation of Shock Wave in Supersonic Airflow

机译:超音速气流中冲击波的非热等离子体缓解

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摘要

A non-thermal technique using a plasma spike, generated by 60 Hz periodic electric discharge, for shock wave mitigation is presented. The experiments were conducted in a Mach 2.5 wind tunnel. A plasma spike was generated in front of a wind tunnel model; it led to a transformation of the shock from a well-defined attached shock into a highly curved shock structure, which had increased shock angle and also appeared in diffused form. As seen in a sequence with increasing discharge intensity, the shock in front of the model moved upstream to become detached with increasing standoff distance from the model and was eliminated near the peak of the discharge. The power measurements excluded the heating effect as a possible cause of the observed shock wave modification. A theory using a cone model as the shock wave generator is presented to explain the observed plasma effect on shock wave. The analysis has shown that the plasma generated in front of the model can effectively deflect the incoming flow; such a flow deflection modifies the structure of the shock wave generated by the cone model, as shown by the numerical results, from a conic shape to a curved one. The shock front moves upstream with a larger shock angle, matching well with that observed in the experiment.
机译:提出了一种使用等离子体尖峰的非热技术,该等离子体尖峰由60 Hz的周期性放电产生,用于减轻冲击波。实验在2.5马赫风洞中进行。在风洞模型前产生了等离子体峰值;它导致了震荡从定义明确的附着震荡转变为高度弯曲的震荡结构,这种结构增加了震荡角度,并且以分散形式出现。从放电强度增加的顺序可以看出,随着距模型的距离增加,模型前部的冲击向上游移动,从而脱离,并在放电峰值附近被消除。功率测量结果排除了热效应,这是观察到的冲击波变化的可能原因。提出了一种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,在模型前面生成的等离子体可以有效地偏转进入的流体。如数值结果所示,这种流动偏转将圆锥模型生成的冲击波的结构从圆锥形状更改为弯曲形状。冲击波前沿以较大的冲击角向上游移动,与实验中观察到的匹配得很好。

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