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Effect of matching between the magnetic field and channel length on the performance of low sputtering Hall thrusters

机译:磁场和通道长度匹配对低溅射霍尔推进器性能的影响

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摘要

Discharge characteristics of a non-wall-loss Hall thruster were studied under different channel lengths using a design based on pushing a magnetic field through a double permanent magnet ring. The effect of different magnetic field intensities and channel lengths on ionization, efficiency, and plume divergence angle were studied. The experimental results show that propellant utilization is improved for optimal matching between the magnetic field and channel length. While matching the magnetic field and channel length, the ionization position of the neutral gas changes. The ion flow is effectively controlled, allowing the thrust force, specific impulse, and efficiency to be improved. Our study shows that the channel length is an important design parameter to consider for improving the performance of non-wall-loss Hall thrusters.
机译:使用基于通过双永磁环推动磁场的设计,研究了在不同通道长度下的无壁霍尔推力器的放电特性。研究了不同磁场强度和通道长度对电离,效率和羽流发散角的影响。实验结果表明,推进剂利用率得到了提高,以实现磁场和通道长度之间的最佳匹配。在匹配磁场和通道长度的同时,中性气体的电离位置发生变化。离子流得到有效控制,从而可以提高推力,比脉冲和效率。我们的研究表明,通道长度是改善无壁霍尔推力器性能时要考虑的重要设计参数。

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  • 来源
    《Advances in space research》 |2018年第3期|837-843|共7页
  • 作者单位

    Plasma Propulsion Lab, Institute of Advanced Power, Harbin Institute of Technology;

    Plasma Propulsion Lab, Institute of Advanced Power, Harbin Institute of Technology;

    Plasma Propulsion Lab, Institute of Advanced Power, Harbin Institute of Technology;

    Plasma Propulsion Lab, Institute of Advanced Power, Harbin Institute of Technology;

    Plasma Propulsion Lab, Institute of Advanced Power, Harbin Institute of Technology;

    Plasma Propulsion Lab, Institute of Advanced Power, Harbin Institute of Technology;

    Plasma Propulsion Lab, Institute of Advanced Power, Harbin Institute of Technology;

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