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Numerical simulation on streamer discharge of short air gap of atmospheric air
Zhang Yun ; Zeng Rong ; Li Xiao-lin ; Luo Bing ; Yang Xue-chang ; He Jin-liang ; Zhang Bo
2010-10-12 ; 2010-10-12
关键词Practical Theoretical or Mathematical Experimental/ air gaps discharges (electric) finite element analysis space charge/ numerical simulation streamer discharge short air gap air atmospheric hydrodynamic model atmospheric pressure finite element method flux-corrected-transport method adaptive mesh method parallel computing method rod-plane electrode physical theory gas discharge electric field distribution space charge/ B2315 Gas discharges B0290T Finite element analysis
中文摘要The hydrodynamic model of streamer discharge in air at atmospheric pressure is presented, and the finite element and flux-corrected-transport (FE-FCT) method is adopted to solve the model. To increase the efficiency of computing, the adaptive mesh method and parallel computing method are introduced. The streamer discharge in air between rod-plane electrode is simulated by the numerical method. The formation and propagation of streamer is numerically observed. The results predicted by the model are in good agreement with that of experimental measurement. The influence of applied voltage and radius of rod electrode on the streamer characteristic are also investigated. The research was based upon the physical theory of gas discharge, get some characteristics of streamer which are difficult to measure directly such as the space charge, electric field distribution.
语种中文
出版者Chinese Society for Electrical Engineering ; China
内容类型期刊论文
源URL[http://hdl.handle.net/123456789/82336]  
专题清华大学
推荐引用方式
GB/T 7714
Zhang Yun,Zeng Rong,Li Xiao-lin,et al. Numerical simulation on streamer discharge of short air gap of atmospheric air[J],2010, 2010.
APA Zhang Yun.,Zeng Rong.,Li Xiao-lin.,Luo Bing.,Yang Xue-chang.,...&Zhang Bo.(2010).Numerical simulation on streamer discharge of short air gap of atmospheric air..
MLA Zhang Yun,et al."Numerical simulation on streamer discharge of short air gap of atmospheric air".(2010).
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