Characteristics of parallel-plate and planar-surface dielectric barrier discharge at atmospheric pressure

被引:11
作者
Srivastava, A. K. [1 ]
Prasad, G. [2 ]
机构
[1] Jaipur Ext Ctr, Birla Inst Technol, Jaipur 302017, Rajasthan, India
[2] Shree Raghvendra Tech Serv Pvt Ltd, Ahmadabad 380015, Gujarat, India
关键词
Dielectric barrier discharge; Parallel-plate discharge; Planar-surface discharge; Surface barrier discharge; Atmospheric pressure glow discharge; GLOW-DISCHARGE; PLASMA; HELIUM; ABSORPTION; FREQUENCY; DENSITY; PHYSICS; AIR;
D O I
10.1016/j.elstat.2014.01.002
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Experiments are performed to investigate and compare the characteristics of stable parallel-plate and planar-surface dielectric barrier discharge in helium gas at atmospheric pressure. The evolution of applied electric field profile and the discharge initiation processes are found quite different for both electrode geometries. Further discharge voltage, discharge current, power densities etc. are compared. The differences of basic plasma properties are presented for both the electrode configurations. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:140 / 146
页数:7
相关论文
共 31 条
[1]   Plasma display panels: physics, recent developments and key issues [J].
Boeuf, JP .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2003, 36 (06) :R53-R79
[2]   PSpice simulation of one atmosphere uniform, glow discharge plasma (OAUGDP) reactor systems [J].
Chen, ZY .
IEEE TRANSACTIONS ON PLASMA SCIENCE, 2003, 31 (04) :511-520
[3]   EXPERIMENTAL STUDIES OF HIGH-POWER MICROWAVE REFLECTION, TRANSMISSION, AND ABSORPTION FROM A PLASMA-COVERED PLANE CONDUCTING BOUNDARY [J].
DESTLER, WW ;
DEGRANGE, JE ;
FLEISCHMANN, HH ;
RODGERS, J ;
SEGALOV, Z .
JOURNAL OF APPLIED PHYSICS, 1991, 69 (09) :6313-6318
[4]   Experimental study of a DBD surface discharge for the active control of subsonic airflow [J].
Dong, B. ;
Bauchire, J. M. ;
Pouvesle, J. M. ;
Magnier, P. ;
Hong, D. .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2008, 41 (15)
[5]   OZONE SYNTHESIS FROM OXYGEN IN DIELECTRIC BARRIER DISCHARGES [J].
ELIASSON, B ;
HIRTH, M ;
KOGELSCHATZ, U .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 1987, 20 (11) :1421-1437
[6]   Shock wave damping and dispersion in nonequilibrium low pressure argon plasmas [J].
Ganguly, BN ;
Bletzinger, P ;
Garscadden, A .
PHYSICS LETTERS A, 1997, 230 (3-4) :218-222
[7]   Time-resolved measurements of electron number density and collision frequency for a fluorescent lamp plasma using microwave diagnostics [J].
Howlader, MK ;
Yang, YQ ;
Roth, JR .
IEEE TRANSACTIONS ON PLASMA SCIENCE, 2005, 33 (03) :1093-1099
[8]   STABLE GLOW PLASMA AT ATMOSPHERIC-PRESSURE [J].
KANAZAWA, S ;
KOGOMA, M ;
MORIWAKI, T ;
OKAZAKI, S .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 1988, 21 (05) :838-840
[9]   Dielectric-barrier discharges: Their history, discharge physics, and industrial applications [J].
Kogelschatz, U .
PLASMA CHEMISTRY AND PLASMA PROCESSING, 2003, 23 (01) :1-46
[10]   Generation of large-volume, atmospheric-pressure, nonequilibrium plasmas [J].
Kunhardt, EE .
IEEE TRANSACTIONS ON PLASMA SCIENCE, 2000, 28 (01) :189-200