DocumentCode
2018439
Title
Development of an analytical model for nonthermal atmospheric barrier discharges
Author
Shi, Jian Jun ; Deng, X.T. ; Kong, Michael G.
Author_Institution
Dept. of Electron. & Electr. Eng., Loughborough Univ., UK
fYear
2003
fDate
5-5 June 2003
Firstpage
320
Abstract
Summary form only given, as follows. We report our development of a further simplified theoretical tool. This is based on an analytical model for diffuse nonthermal atmospheric discharges in a single-component noble gas. Space charges are taken into account. We demonstrate that though kinetic effects are ignored the developed analytical model can predict accurately the evolution of the discharge current density and the electric field. In particular we show that the waveform of the discharge current pulse is predominately determined by that of the applied voltage and that its peak value is strongly influenced by the temporal variation of the ion drift velocity. Such an analytical model of nonthermal atmospheric dielectric barrier discharges offers mathematical simplicity and physical clarity that are often crucial in gaining physical insights and deducing scaling laws. It should be a simple first-stop tool to develop basic understanding of the discharge dynamics under different operation conditions (e.g. gas composition and applied voltage) as well as evolve new and different operation schemes of nonthermal atmospheric gas plasmas before embarking on full-scale experimentation or/and numerical simulation.
Keywords
discharges (electric); atmospheric barrier discharges; ion drift velocity; Analytical models; Atmospheric waves; Current density; Dielectrics; Electron mobility; Kinetic theory; Numerical simulation; Plasma simulation; Space charge; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Plasma Science, 2003. ICOPS 2003. IEEE Conference Record - Abstracts. The 30th International Conference on
Conference_Location
Jeju, South Korea
ISSN
0730-9244
Print_ISBN
0-7803-7911-X
Type
conf
DOI
10.1109/PLASMA.2003.1228905
Filename
1228905
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