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An Experimental Investigation of the Effect of a Transverse Hypersonic Flow Velocity upon a Low-Density D. C. Electrical Discharge in Air

机译:横向高超声速流动速度对低密度直流空气放电影响的实验研究

摘要

The low-density D. C. electrical discharge in a uniform gasudstationary with respect to the electrodes has been studied extensively. However. when the gas moves at a hypersonic speed transverse to the electrodes, several completely new effects are introduced. Experiments were carried out with air in the GALCIT 5-inch by 5-inch hypersonic wind tunnel with a nominal Mach number of 5.8. D. C. breakdown voltages and steady-state sub-normal glow voltages wereudmeasured across a channel formed by two sharp-edged insulating flat plates in which flat-plate "Rogowski" electrodes were embedded. Segmented electrodes were then used in the normal glow regime to measure current distributions at each electrode for various electrodeudsegment combinations, total currents, and densities.ududSome important results of the present study are the following. For the characteristic dimensions and speeds involved. the explicit dependenceudof electrical breakdown upon the velocity of the stream isudsmall compared to the effect of boundary layer density defects. A theoretical treatment of breakdown is given and qualitative agreement with experiments is obtained. In the normal glow regime using segmented electrodes, an unmistakable explicit flow velocity effect wasudobserved, with the discharge current paths being displaced downstream compared to static bell-jar tests at equivalent densities.
机译:相对于电极,在均匀的气体/非稳态下的低密度直流放电已被广泛研究。然而。当气体以高超声速横穿电极移动时,会引入几种全新的效果。实验是在标称马赫数为5.8的GALCIT 5英寸乘5英寸高超音速风洞中进行的。在由两个尖锐的绝缘平板形成的通道中测量了直流击穿电压和稳态的低于正常的辉光电压,在该平板中嵌入了平板“ Rogowski”电极。然后将分段电极用于正常辉光状态,以测量各种电极电极段组合,总电流和密度下每个电极的电流分布。 ud ud本研究的一些重要结果如下。对于涉及的特征尺寸和速度。与边界层密度缺陷的影响相比,电击穿对流速度的显式依赖 ud很小。给出了击穿的理论处理,并与实验定性吻合。在使用分段电极的正常辉光状态下,没有明显的明显流速影响,在相同密度下,与静态钟罩试验相比,放电电流路径向下游移动。

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    Marlotte Gary L.;

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  • 年度 1962
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