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介质阻挡放电等离子体发光特性的光谱分析
引用本文:李钢,李汉明,聂超群,张翼,李英骏,朱俊强,李玉同,张杰.介质阻挡放电等离子体发光特性的光谱分析[J].航空动力学报,2008,23(3):490-495.
作者姓名:李钢  李汉明  聂超群  张翼  李英骏  朱俊强  李玉同  张杰
作者单位:1. 中国科学院,工程热物理研究所,北京,100080
2. 中国科学院物理研究所光物理实验室,北京,100080;中国矿业大学,理学院,北京,100083
3. 中国科学院,物理研究所光物理实验室,北京,100080
基金项目:国家自然科学基金(50676094,10474137,60621063,10510490,10575129,10675164)
摘    要:利用光谱仪作为等离子体的诊断手段,开展了一系列实验,包括等离子体光谱强度与电源电压和频率的关系、等离子体光谱强度沿弦向的变化规律、降低气压以及冲入其它气体对等离子体发光强度的影响.实验中发现等离子体发光强度与电源电压是线性关系而频率对发光强度影响不大;发光强度沿弦向变化规律近似为高斯分布;降低气压、冲入氦气都可增强等离子体发光强度.这些工作为开展进一步的实验研究以及数值模拟工作奠定了基础.

关 键 词:航空、航天推进系统  等离子体  光谱  发光强度  气压  冲入气体
文章编号:1000-8055(2008)03-0490-06
收稿时间:4/9/2007 12:00:00 AM
修稿时间:2007年4月9日

Spectrum analysis of the characteristic of light emission from dielectric barrier discharge plasmas
LI Gang,LI Hang-ming,NIE Chao-qun,ZHANG Yi,LI Ying-jun,ZHU Jun-qiang,LI Yu-tong and ZHANG Jie.Spectrum analysis of the characteristic of light emission from dielectric barrier discharge plasmas[J].Journal of Aerospace Power,2008,23(3):490-495.
Authors:LI Gang  LI Hang-ming  NIE Chao-qun  ZHANG Yi  LI Ying-jun  ZHU Jun-qiang  LI Yu-tong and ZHANG Jie
Institution:Institute of Engineering Thermophysics, Chinese Academy of Sciences 100080, China;Institute of Physics, Chinese Academy of Sciences, Beijing, 100080, China;School of Sciences, China University of Mining and Technology, Beijing, 100083, China;Institute of Engineering Thermophysics, Chinese Academy of Sciences 100080, China;Institute of Physics, Chinese Academy of Sciences, Beijing, 100080, China;Institute of Physics, Chinese Academy of Sciences, Beijing, 100080, China;School of Sciences, China University of Mining and Technology, Beijing, 100083, China;Institute of Engineering Thermophysics, Chinese Academy of Sciences 100080, China;Institute of Physics, Chinese Academy of Sciences, Beijing, 100080, China;Institute of Physics, Chinese Academy of Sciences, Beijing, 100080, China
Abstract:The effects of high voltage,frequency,pressure and injection of gases on plasma generation were investigated by measuring the spectra of the plasma.It is found that the relation between light intensity of plasma and the supplied voltage is linear whereas the effect of frequency is not distinct.The variation of light intensity in chord wise direction accords with Gauss function.In lower pressure the light intensity of plasma is enhanced and injection of helium could have the same effect.These results have established necessary basis for further experiments and numerical simulations.
Keywords:aerospace propulsion system  plasma  spectrum  intensity  pressure  gas injection
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