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Experimental scaling laws for the discharge oscillations and performance of Hall thrusters

机译:霍尔推进器放电振荡和性能的实验缩放定律

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摘要

Low-frequency (5-30 kHz) discharge current oscillations characterize the operation of Hall thrusters and represent a valuable metric not only to monitor the thruster behavior, but also to optimize the thruster performance. Two types of low-frequency oscillation modes are commonly observed: a global "breathing" mode, associated with the propellant ionization, and a local mode, typically characterized by a lower oscillation amplitude and the appearance of azimuthal spokes. The main characteristics of discharge oscillations and the transition between the two oscillation modes vary greatly with the thruster geometry and the operating condition. In this work, we present the results of an experimental campaign carried out on a 20 kW-class thruster prototype, SITAEL's HT20k, with an exchangeable discharge channel and a magnetic circuit. Three different channel sizes were tested over a wide range of operating conditions and magnetic fields. For each operating point, a high frequency measurement of the discharge current was performed, recording the main characteristics of the oscillations. The data collected were then processed to derive the influence coefficients of each thruster parameter on the discharge current characteristics, as well as their dispersion. Finally, this allowed us to formulate general, data-driven scaling laws for the discharge current salient features, such as oscillation amplitude and dominant frequency. The gathered insight sheds light on the physical processes involved in the thruster discharge. At the same time, the possibility to model with simple functional laws the main oscillatory mode of Hall thrusters offers a unique aid to the optimization of thruster design and the evaluation of thruster performance during life.
机译:低频 (5-30 kHz) 放电电流振荡是霍尔推进器运行的特征,不仅代表了监测推进器行为的宝贵指标,也是优化推进器性能的重要指标。通常观察到两种类型的低频振荡模式:与推进剂电离相关的全局“呼吸”模式和局部模式,通常以较低的振荡幅度和方位辐条的出现为特征。放电振荡的主要特性和两种振荡模式之间的过渡随推进器的几何形状和工作条件而有很大差异。在这项工作中,我们展示了在20 kW级推进器原型SITAEL的HT20k上进行的实验活动的结果,该原型具有可交换的放电通道和磁路。在各种操作条件和磁场中测试了三种不同的通道尺寸。对于每个工作点,对放电电流进行高频测量,记录振荡的主要特性。然后对收集到的数据进行处理,得出每个推进器参数对放电电流特性及其色散的影响系数。最后,这使我们能够为放电电流显著特征(如振荡幅度和主频率)制定通用的、数据驱动的缩放定律。收集到的见解揭示了推进器放电中涉及的物理过程。同时,用简单的功能定律对霍尔推进器的主要振荡模式进行建模的可能性为推进器设计的优化和推进器寿命性能的评估提供了独特的帮助。

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