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首页> 外文期刊>IEEE Transactions on Plasma Science >Characteristics of Cold Argon Arc-Jet Plasma Flowing Along Open-Field-Line and the Effects of Collisions on Deceleration
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Characteristics of Cold Argon Arc-Jet Plasma Flowing Along Open-Field-Line and the Effects of Collisions on Deceleration

机译:沿开放场线流动的冷氩弧射流等离子体的特征及其碰撞对减速的影响

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摘要

We report basic characteristics of a cold supersonic argon arc-jet plasma accelerated along open-field-line. The arc jet is generated by arc discharge, and ejected through an anode-nozzle into a rarefied gas wind tunnel with a uniform longitudinal magnetic field. The plasma further expands at the end of magnets, which we refer to as a magnetic-nozzle, where we examine variation in plasma parameters using a para–perp type Mach probe and a four-tip type Mach probe. Our experiments show that plasma potential drops at the magnetic-nozzle area and that the ion flow velocity increases up to about Mach 3, followed by deceleration into subsonic transition. To discuss the mechanism of acceleration and deceleration, we assume a 1-D quasi-neutral flow, and constructed a model to describe the deceleration because of friction between ions and neutral particles at the end of electromagnets, where charged particles are accelerated but neutrals are not. We find reasonable agreement of the experimental results with our modeling of the acceleration and deceleration, although a few issues are left for us to improve.
机译:我们报告了沿开放磁场线加速的冷超声速氩弧射流等离子体的基本特征。电弧喷射是由电弧放电产生的,并通过阳极喷嘴喷射到具有均匀纵向磁场的稀薄气体风洞中。等离子体在磁体的末端进一步扩展,我们将其称为磁喷嘴,在该磁体中,我们使用对位型Mach探针和四尖端型Mach探针检查等离子体参数的变化。我们的实验表明,等离子体电位在磁喷嘴区域下降,离子流速度增加到大约3马赫,然后减速到亚音速转变。为了讨论加速和减速的机理,我们假设一维准中性流,并构建了一个模型来描述由于电磁体末端离子与中性粒子之间的摩擦而引起的减速,在该电磁场中,带电粒子被加速而中性粒子被加速。不。尽管仍有一些问题需要我们改进,但我们发现实验结果与我们的加速和减速模型合理吻合。

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