Affiliation of Author(s):自动化学院
Journal:PLASMA SCIENCE & TECHNOLOGY
Key Words:microplasma atmospheric pressure plasma non-thermal plasma microdischarge
Abstract:An atmospheric-pressure microplasma plume of diameter 10 mu m is generated inside a long tube. The length of the microplasma plume reaches as much as 2 cm. First, with the assistance of an air dielectric barrier discharge (DBD), the ignition voltage of the microplasma decreases from 40 kV to 23.6 kV. Second, although the current density reaches as high as (1.2-7.6) x 10(4) A cm(-2), comparable to the current density in transient spark discharge, the microplasma plume is nonthermal. Third, it is interesting to observe that the amplitude of the discharge current in a positive cycle of applied voltage is much lower than that in a negative cycle of applied voltage. Fourth, the electron density measured by the Stark broadening of Ar spectral line 696.5 nm reaches as high as 3 x 10(16) cm(-3), which yields a conductivity of the microplasma column of around 48 S m(-1). In addition, the propagation velocity of the microplasma plume, obtained from light signals at different axial positions, ranges from 1 x 10(5) m s(-1) to 5 x 10(5) m s(-1). A detailed analysis reveals that the surface charges deposited on the inner wall exert significant influence on the discharge behavior of the microplasma.
ISSN No.:1009-0630
Translation or Not:no
Date of Publication:2018-10-01
Co-author:武菲,刘雪原,陈文,cw,刘畅,Zhang Charles
Correspondence Author:Shuqun Wu
Pre One:The influences of the electrode dimension and the dielectric material on the breakdown characteristics of coplanar dielectric barrier discharge in ambient air
Next One:Laser Induced Fluorescence Diagnostics of the Temporal and Spatial Distribution of OH Radicals and O Atom in a Low Temperature Plasma Jet at Atmospheric Pressure
Professor
Supervisor of Doctorate Candidates
Gender:Male
Alma Mater:华中科技大学
Education Level:华中科技大学
Degree:Doctoral Degree in Engineering
School/Department:College of Automation Engineering
Discipline:电气工程. High Voltage and Electrical Insulation Engineering
Business Address:南京市江宁区将军大道29号,南京航空航天大学自动化学院3号楼
Contact Information:邮箱:wushuqun@nuaa.edu.cn;电话:13305143147
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