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首页> 外文期刊>Plasma Sources Science & Technology >Non-invasive in situ measurement of the near-wall ion kinetic energy in a magnetically shielded Hall thruster
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Non-invasive in situ measurement of the near-wall ion kinetic energy in a magnetically shielded Hall thruster

机译:在磁屏蔽霍尔推进器中的近壁离子动能的非侵入性地测量

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The ion velocity distribution functions in the near-wall region of a high-power, 9-kW class magnetically shielded Hall thruster are experimentally characterized to quantify the degree to which the discharge chamber walls are shielded from ion bombardment. Ion velocity measurements are performed at a discharge voltage of 300 V and a discharge current of 15 A using laser-induced fluorescence along the centerline and discharge chamber walls. The centerline results show that the location of the acceleration region exists downstream of the exit plane of the thruster, which is consistent with previous measurements on other magnetically shielded thrusters. Measurements performed in the near-wall region show that ions are moving approximately parallel to the walls up to the exit of the thruster; however, a small but finite maximum mean velocity of 0.2 km s?1 is directed toward the discharge chamber walls. A sheath analysis is performed to define a critical electron temperature below which shielding will be maintained given these near wall ion velocities. This value is found to be in excess of predicted temperatures in this region. Taken together, these results confirm that all criteria for magnetic shielding of Hall thrusters have been satisfied.
机译:实验表征高功率9-kW型磁屏蔽霍尔推进器的近壁区域的离子速度分布函数在实验中,以量化排出室壁被离子轰击屏蔽的程度。离子速度测量以300V的放电电压和15a的放电电流使用沿中心线和排出室壁的激光诱导的荧光进行。中心线结果表明加速区域的位置存在于推进器的出口平面下游,这与以前的其他磁屏蔽推进器的测量一致。在近壁区域中进行的测量表明,离子在壁上大致平行地移动到推进器的出口;然而,小但有限的最大平均速度为0.2 km sφ1朝向排出室壁。执行鞘分析以定义低于该关键电子温度,其将在靠近壁离子速度定义屏蔽。发现该值超过该地区的预测温度。总之,这些结果证实,满足了霍尔推进员的磁屏蔽的所有标准。

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