Space Charge Transient Kinetic Characteristics in DC Air Corona Discharge at Atmospheric Pressure

被引:0
|
作者
刘兴华 [1 ]
咸日常 [1 ]
孙学峰 [1 ]
王涛 [1 ]
吕学宾 [2 ]
陈素红 [3 ]
杨帆 [4 ]
机构
[1] State Grid Zibo Power Supply Company
[2] State Grid Shandong Electric Power Company
[3] State Grid Shandong Electric Power Research Institute
[4] State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University
基金
中国国家自然科学基金; 中央高校基本科研业务费专项资金资助;
关键词
air corona discharge; atmospheric pressure; numerical simulation; mechanism;
D O I
暂无
中图分类号
O461 [气体放电(气体导电)];
学科分类号
0809 ; 080901 ;
摘要
Investigating the corona mechanism plays a key role in enhancing the performance of electrical insulation systems. Numerical simulation offers a better understanding of the physical characteristics of air corona discharges. Using a two-dimensional axisymmetrical kinetics model,into which the photoionization effect is incorporated, the DC air corona discharge at atmosphere pressure is studied. The plasma model is based on a self-consistent, multi-component, and continuum description of the air discharge, which is comprised of 12 species and 22 reactions. The discharge voltage-current characteristic predicted by the model is found to be in quite good agreement with experimental measurements. The behavior of the electronic avalanche progress is also described. O+2and N+2are the dominant positive ions, and the values of O-and O-2densities are much smaller than that of the electron. The electron and positive ion have a low-density thin layer near the anode, which is a result of the surface reaction and absorption effect of the electrode.As time progresses, the electric field increases and extends along the cathode surface, whereas the cathode fall shrinks after the corona discharge hits the cathode; thus, in the cathode sheath,the electron temperature increases and the position of its peak approaches to the cathode. The present computational model contributes to the understanding of this physical mechanism, and suggests ways to improve the electrical insulation system.
引用
收藏
页码:749 / 757
页数:9
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