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Performance of a Helicon Hall Thruster Operating with Xenon, Argon, and Nitrogen

机译:使用氙气,氩气和氮气的Helicon Hall推进器的性能

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The Helicon Hall Thruster (HHT) is a two-stage thruster that was developed to investigate whether a radiofrequency ionization stage can improve the overall efficiency of a Hall thruster operating at high thrust and low specific impulse. This experiment measured the single-stage and two-stage performance of the HHT for 10-25 mg/s anode mass flow rates of xenon at 100-200 V discharge voltages, and also for 6 mg/s of argon at 300 V, and 2.6 mg/s of nitrogen at 200 V. Argon and nitrogen performance are characterized by low beam divergence efficiency and low propellant utilization efficiency. During two-stage operation, the thrust of the HHT increased slightly with rf power, but the propulsive efficiency and thrust-to-power both decreased with increasing rf power. Probe diagnostics suggest that gains were realized by a slight increase in propellant efficiency, but that the rate of increase was not sufficient to overcome the increase in power.
机译:Helicon霍尔推力器(HHT)是一款两级推力器,旨在研究射频电离级是否可以提高在高推力和低比脉冲下运行的霍尔推力器的整体效率。该实验测量了在100-200 V放电电压下氙气的质量流量为10-25 mg / s,在300 V下为6 mg / s的氩气下HHT的单级和两级性能,以及氮气在200 V下为2.6 mg / s。氩气和氮气性能的特点是束发散效率低和推进剂利用效率低。在两阶段运行期间,HHT的推力随rf功率而略有增加,但推进效率和推力对功率均随rf功率的增加而降低。探针诊断表明,推进剂效率的略微提高可实现收益,但提高速率不足以克服功率的提高。

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