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阴极端面旋转弧根的数值分析 被引量:1

Numerical analysis of the rotating arc root on the cathode surface
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摘要 辅助电弧的阴极弧根在管状钨阴极端面旋转时 ,随着阴极弧根旋转频率的增加 ,在阴极端面形成一圈温度较高的区域 ;区域中各点的温度 (除弧根处温度 )趋于均匀 ,从而为主电弧的阴极弧根在这个区域中分裂成多弧根或形成扩散型弧根模式提供了必要的温度条件 ;弧根处的阴极端面温度随旋转频率的增加而下降并趋于一个稳定的值。本文利用三维热传导方程对此进行了分析。 Three-dimensional heat transfer equation was used to discuss the circular region of high temperature formed on the surface of the tubular tungsten cathode, the cathode surface temperature in the region becomes uniform gradually (except that at the point of the cathode arc root) when the cathode arc root of the secondary arc is rotating on surface of the tungsten cathode and the rotating frequency of the secondary arc root is increasing. And the necessary condition of the cathode surface temperature is provided to form the model of the multi-arc-root or diffusive arc root. At the same time, the cathode surface temperature at the point of the cathode arc root decreases and reaches a constant when the rotating frequency increases.
出处 《核技术》 CAS CSCD 北大核心 2002年第4期272-276,共5页 Nuclear Techniques
关键词 阴极端面 数值分析 阴极弧根 扩散型弧根 电弧等离子体 加热器 主电弧 辅助电弧 Cathode arc root, Diffusive arc root, Arc plasma heater, Key arc, Secondary arc
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  • 1Simone Anders, André Anders. IEEE Transactions on Plasma Science, 1991, 19(1):20-24
  • 2郭文康,毛心桥,张平,等. 第七届全国等离子体科学和技术会议论文集. 合肥:中国科学院等离子体物理研究所,1995. 25-28GUO Wenkang, MAO Xinqiao, ZHANG Ping, et al. Proceedings of the 7th National Conference on Plasma Science and Technology. Hefei: Institute of Plasma Physics of Academia Sinica, 1995. 25-28
  • 3М.Ф.恕科夫,А.С.科罗捷耶夫,Б.А.乌柳科夫. 热等离子体实用动力学. 北京:科学出版社,1981. 245-250М.Ф.Shukov, А.С.Krojev, Б.А.Wulukov. Practiacl Dynamics of Thermo-Plasma. Beijing: Science Press, 1981. 245-250

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