放电室几何形状对小功率霍尔推进器特性的影响

S. Mazouffre, K. Dannenmayer, G. Bourgeois, A. Lejeune, M. Guyot, S. Denise, P. Renaudin, V. Cagan
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引用次数: 2

摘要

一个200w的永磁霍尔推力器——名为PPI,意为“小推力器创新”——已经在三个通道宽度的值下使用氙气进行了操作。平均通道直径、通道长度和磁场拓扑结构保持固定。为了研究通道宽度变化对放电特性的影响,在不同的推进剂质量流量和施加电压条件下,对每种几何形状进行了一系列实验。用平面法拉第探针在羽流远场测量了离子电流。利用标定热成像技术测定了Al2O3通道内壁和外壁的平衡温度。最后,采用激光诱导荧光光谱法沿通道中心线在834 nm处测量离子速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of discharge chamber geometry on characteristics of a low-power Hall thruster
A 200 W permanent-magnet Hall thruster - named PPI for “Petit Propulseur Innovant” - has been operated with xenon for three values of the channel width. The mean channel diameter, the channel length and the magnetic field topology stay fixed. Series of experiments have been carried out for each geometry over a broad set of propellant mass flow rates and applied voltages to investigate the impact of a channel width variation on discharge properties. The ion current was measured in the plume far field by means of a planar Faraday probe. The equilibrium temperature of inner and outer Al2O3 channel walls was determined by means of calibrated thermal imaging. Finally, the ion velocity was measured by laser-induced fluorescence spectroscopy at 834 nm along the channel centerline.
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