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首页> 外文期刊>Journal of Applied Physics >Laser-induced fluorescence measurements of acceleration zone scaling in the 12.5 kW HERMeS Hall thruster
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Laser-induced fluorescence measurements of acceleration zone scaling in the 12.5 kW HERMeS Hall thruster

机译:激光诱导的12.5 kW HERMeS霍尔推进器加速区缩放的荧光测量

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We present laser-induced fluorescence measurements of acceleration zone scaling with discharge voltage (V-d), magnetic field strength (B), and facility background pressure (P-BG) in NASA's 12.5kW Hall Effect Rocket with Magnetic Shielding. At fixed discharge current, the plasma potential profiles at discharge voltages from 300 to 600 V approximately overlapped in the region with plasma potential less than 300 V; ion acceleration began further upstream at higher V-d because the region with a steep potential gradient was broader. The radial divergence of mean ion velocity vectors in the outer half of the channel and near plume increased with decreasing V-d. At fixed V-d, the acceleration zone was located further upstream at higher B and at higher P-BG. Bimodal ion velocity distribution functions (IVDFs) were measured along the channel centerline in the acceleration zone at high discharge voltages; this effect was attributed to time-averaging over movement of the acceleration zone during large-amplitude discharge current oscillations. At lower discharge voltages, the broadening of the IVDFs in the near plume could not be fully explained by ionization within the acceleration region. These results have implications for understanding front pole erosion, which can be an important wear mechanism over the long lifetimes of magnetically shielded thrusters, and they provide baseline data for validating first principles models of cross-field electron transport. Published by AIP Publishing.
机译:我们介绍了NASA的12.5kW带有电磁屏蔽的霍尔效应火箭的激光诱导荧光测量结果,包括放电电压(V-d),磁场强度(B)和设施背景压力(P-BG)。在固定的放电电流下,放电电压为300至600 V时的等离子体电势分布在等离子体电势小于300 V的区域中大致重叠;在较高的V-d处,离子加速开始向上游移动,因为具有陡峭电位梯度的区域更宽。随着V-d的减小,通道外半部和靠近羽流的平均离子速度矢量的径向散度增大。在固定的V-d下,加速区位于更高的B和更高的P-BG的更上游。在高放电电压下,沿加速区中的通道中心线测量了双峰离子速度分布函数(IVDF)。这种影响归因于在大幅度放电电流振荡期间加速区运动的时间平均。在较低的放电电压下,无法通过加速区域内的电离完全解释近羽中IVDF的变宽。这些结果对于理解前极腐蚀具有重要意义,前极腐蚀可能是磁屏蔽推进器长寿命的重要磨损机理,并且它们为验证交叉场电子传输的第一原理模型提供了基线数据。由AIP Publishing发布。

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