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利用激光诱导荧光层析成像技术测量电推力器中的三维离子速度分布函数

3D ion velocity distribution function measurement in an electric thruster using laser induced fluorescence tomography.

作者信息

Elias P Q, Jarrige J, Cucchetti E, Cannat F, Packan D

机构信息

ONERA-The French Aerospace Lab, Palaiseau F-91761, France.

出版信息

Rev Sci Instrum. 2017 Sep;88(9):093511. doi: 10.1063/1.5001304.

Abstract

Measuring the full ion velocity distribution function (IVDF) by non-intrusive techniques can improve our understanding of the ionization processes and beam dynamics at work in electric thrusters. In this paper, a Laser-Induced Fluorescence (LIF) tomographic reconstruction technique is applied to the measurement of the IVDF in the plume of a miniature Hall effect thruster. A setup is developed to move the laser axis along two rotation axes around the measurement volume. The fluorescence spectra taken from different viewing angles are combined using a tomographic reconstruction algorithm to build the complete 3D (in phase space) time-averaged distribution function. For the first time, this technique is used in the plume of a miniature Hall effect thruster to measure the full distribution function of the xenon ions. Two examples of reconstructions are provided, in front of the thruster nose-cone and in front of the anode channel. The reconstruction reveals the features of the ion beam, in particular on the thruster axis where a toroidal distribution function is observed. These findings are consistent with the thruster shape and operation. This technique, which can be used with other LIF schemes, could be helpful in revealing the details of the ion production regions and the beam dynamics. Using a more powerful laser source, the current implementation of the technique could be improved to reduce the measurement time and also to reconstruct the temporal evolution of the distribution function.

摘要

通过非侵入式技术测量完整的离子速度分布函数(IVDF),可以增进我们对电离过程以及在电动推进器中起作用的束流动力学的理解。本文将激光诱导荧光(LIF)层析重建技术应用于微型霍尔效应推进器羽流中IVDF的测量。开发了一种装置,使激光轴能够围绕测量体积沿两个旋转轴移动。利用层析重建算法对从不同视角获取的荧光光谱进行组合,以构建完整的三维(相空间)时间平均分布函数。该技术首次用于微型霍尔效应推进器的羽流中,以测量氙离子的完整分布函数。给出了两个重建示例,分别在推进器鼻锥前方和阳极通道前方。重建结果揭示了离子束的特征,特别是在推进器轴线上观察到的环形分布函数。这些发现与推进器的形状和运行情况一致。该技术可与其他LIF方案配合使用,有助于揭示离子产生区域的细节和束流动力学。使用更强大的激光源,可以改进该技术的当前实施方案,以减少测量时间,并重建分布函数的时间演化。

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