首页|A novel optical emission spectroscopy method for diagnostics of contribution of different ionization mechanisms and flux of ions in different valences in discharge channel of a Hall thruster

A novel optical emission spectroscopy method for diagnostics of contribution of different ionization mechanisms and flux of ions in different valences in discharge channel of a Hall thruster

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The mass application of Hall thrusters poses the need for a diagnostic method of ioniza-tion mechanism in the discharge channel to boost the iteration and optimization of thruster design.This work presents an Optical Emission Spectroscopy(OES)method for diagnostics of the contri-bution of different ionization mechanisms and the flux of ions in different valences in the discharge channel of a Hall thruster.The emission spectra in the discharge channel are analyzed by jointly utilizing a collisional-radiative model,an ionization-excitation model,and a flux-conservation model.It is found that the intensities of some spectral lines can be converted into the reaction rates of collision processes,e.g.,electron-induced excitation and ionization processes.The latter can fur-ther be used to determine the evolutions of particle fluxes by utilizing the conservation law of mat-ter.The novel method is demonstrated on a kilo-watt Hall thruster.The evolutions of several parameters are determined using this method along the discharge channel,including the ionization rates of different mechanisms,particle fluxes,particle densities,and particle velocities.This novel method can be further developed by being jointly utilized with spectral imaging and tomography techniques,enabling diagnostics of multi-dimensional distributions of the above-mentioned parameters in the discharge channel and near-field plume.

Hall thrusterOptical emission spec-troscopyIonization mechanismParticle fluxDivalent ion

Yanfei WANG、Ximing ZHU、Renqiu ZOU、Shilin YAN、Junwei JIA、Zhongxi NING、Daren YU

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School of Energy Science and Engineering,Harbin Institute of Technology,Harbin 150001,China

Key Laboratory of Aerospace Plasma Propulsion,Ministry of Industry and Information Technology,Harbin 150001,China

Beijing Orient Institute of Measurement and Test,Beijing 100094,China

Beijing Aerospace Long March Aircraft Research Institute,Beijing 100076,China

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国家自然科学基金

U22B2094

2024

中国航空学报(英文版)
中国航空学会

中国航空学报(英文版)

CSTPCDEI
影响因子:0.847
ISSN:1000-9361
年,卷(期):2024.37(4)
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