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Experimental investigation of the effects of variable expanding channel on the performance of a low-power cusped field thruster

机译:可变扩展通道对低功率尖头磁场推进器性能影响的实验研究

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Due to a special magnetic field structure, the multi-cusped field thruster shows advantages of low wall erosion, low noise and high thrust density over a wide range of thrust. In this paper, expanding discharge channels are employed to make up for deficiencies on the range of thrust and plume divergence, which often emerges in conventional straight cylindrical channels. Three thruster geometries are fabricated with different expanding-angle channels, and a group of experiments are carried out to find out their influence on the performance and discharge characteristics of the thruster. A retarding potential analyzer and a Faraday probe are employed to analyze the structures of the plume in these three models. The results show that when the thrusters operate at low mass flow rate, the gradually-expanding channels exhibit lower propellant utilization and lower overall performance by amounts not exceeding 44.8% in ionization rate and 19.5% in anode efficiency, respectively. But the weakening of magnetic field intensity near the exit of expanding channels leads to an extended thrust throttling ability, a smaller plume divergence angle, and a relatively larger stable operating space without mode converting and the consequent performance degradation.
机译:由于具有特殊的磁场结构,多点磁场推进器在大推力范围内显示出低壁腐蚀,低噪音和高推力密度的优点。在本文中,采用扩展的排放通道来弥补推力和羽流发散范围的不足,而这种缺陷通常出现在常规的直圆柱通道中。制作了具有不同扩展角通道的三种推进器几何形状,并进行了一组实验,以了解它们对推进器性能和排放特性的影响。在这三个模型中,使用阻滞势分析器和法拉第探针来分析羽流的结构。结果表明,当推进器以低质量流量运行时,逐渐扩展的通道分别具有较低的推进剂利用率和较低的整体性能,其电离率和阳极效率分别不超过44.8%和19.5%。但是,扩展通道出口附近的磁场强度减弱导致推力节流能力增强,羽流发散角变小,并且相对较大的稳定工作空间而没有模式转换,从而导致性能下降。

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