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首页> 外文期刊>Plasma Sources Science & Technology >Operation of a low-power Hall thruster: comparison between magnetically unshielded and shielded configuration
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Operation of a low-power Hall thruster: comparison between magnetically unshielded and shielded configuration

机译:低功耗霍尔推进器的操作:磁性非屏蔽和屏蔽配置之间的比较

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摘要

The operation of a 250W low-power Hall thruster called ISCT-200 has been studied using a two-dimensional hybrid model. Two different magnetic field topologies have been tested. One topology is called the unshielded configuration and corresponds to a standard magnetic configuration with a quasi-radial magnetic field, and the other is called the magnetic shielding (MS) configuration where the zone of maximum of magnetic field is shifted in the near field plume. In the MS configuration, close to the channel walls, magnetic lines are forced to be parallel to walls. In the shielded configuration, the ionization takes place very close to the exhaust region and the acceleration occurs downstream the exit plane in the near field plume. The MS configuration reduces the erosion very effectively since the cooling of the electron temperature inside the channel strongly diminishes the sheath potential drop and consequently the kinetic energy of ions impacting on channel walls. The shift of ionization and acceleration regions towards the near field plume also contributes to the reduction of erosion. Calculations show very similar performances for both magnetic field configurations, with a larger than measured thrust in the shielded version of the thruster. Also, thanks to a larger electron temperature a larger fraction of doubly charged ions is found in the shielded magnetic configuration of the ICST-200.
机译:使用二维混合模型研究了250W低功耗霍尔推进器的操作。已经测试了两种不同的磁场拓扑。一种拓扑被称为未屏蔽的配置,并且对应于具有准径向磁场的标准磁性配置,另一个称为磁屏蔽(MS)配置,其中磁场的最大区域在近场羽流中移动。在MS配置中,靠近沟道壁,磁线被迫平行于墙壁。在屏蔽配置中,电离非常接近排气区域,并且加速发生在近场羽流的出射平面下游。 MS配置非常有效地减小了侵蚀,因为通道内的电子温度的冷却强烈地减小了鞘势下降,从而撞击沟道壁的离子的动能。朝向近场羽流的电离和加速区的转变也有助于减少侵蚀。计算显示磁场配置的非常相似的性能,大于推进器的屏蔽版本中的测量推力大。而且,由于更大的电子温度,在ICST-200的屏蔽磁构造中发现了较大的双电荷离子。

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