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首页> 外文期刊>Plasma Chemistry and Plasma Processing >Measurements of Temperature and Electron Number Density in a dc Argon―Nitrogen Plasma Torch―Supersonic Operation
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Measurements of Temperature and Electron Number Density in a dc Argon―Nitrogen Plasma Torch―Supersonic Operation

机译:直流氩-氮等离子体炬-超音速操作中温度和电子数密度的测量

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摘要

The diagnostics study on supersonic argonitrogen plasma jets expanded into a low-pressure test chamber is carried out by means of emission spectroscopy and enthalpy probe measurement techniques. The spatial distributions of electron density, temperatures, and associated shock structure effects in plasma jets are investigated in conjunction with their direct dependency upon the chamber pressure. The experimental results show the occurrence and the position of different zones; i.e., supersonic expansion, stationary shock waves and subsonic jet at pressures below 51 kPa. Flow fluctuations due to the oblique shock wave at 39 kPa background pressure are observed and discussed. The electron density profiles show variations along the plasma axis that coincide with the position of the shock waves. The experimental results show the transition from the moderately under-expanded to the strongly under-expanded jet structure induced by lowering of the chamber pressure.
机译:利用发射光谱和焓探头测量技术对超音速氩/氮等离子体射流扩展到低压测试室内进行了诊断研究。结合等离子束对腔室压力的直接依赖性,研究了电子密度,温度以及相关的激波结构效应在等离子束中的空间分布。实验结果表明了不同区域的发生和位置。即低于51 kPa的压力下的超音速膨胀,固定冲击波和亚音速射流。观察和讨论了在39 kPa背景压力下斜向冲击波引起的流量波动。电子密度分布显示出沿着等离子体轴的变化,该变化与冲击波的位置一致。实验结果表明,由于腔室压力降低,喷射结构从中等膨胀不足过渡到强烈膨胀不足。

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