DocumentCode
1225958
Title
Theoretical and experimental studies for spherical free-conducting particle behavior between nonparallel plane electrodes with AC voltages in air
Author
Sakai, Koh-Ichi ; Abella, Dan Labrado ; Khan, Yasin ; Suehiro, Junya ; Hara, Masanori
Author_Institution
Dept. of Electr. & Electron. Syst. Eng., Kyushu Univ., Fukuoka, Japan
Volume
10
Issue
3
fYear
2003
fDate
6/1/2003 12:00:00 AM
Firstpage
404
Lastpage
417
Abstract
This paper deals with free-conducting particle motion and particle-triggered breakdown in AC electric fields between nonparallel plane electrodes in atmospheric air. Spherical particle motion was investigated theoretically and experimentally under AC voltages with various frequencies, considering the effect of the electrical gradient force and the dependence of the Coulomb force magnitude on the distance between a particle and an electrode. The result shows that when the Coulomb force acting on a bouncing particle changes its direction periodically under AC voltage whose frequency is around commercial power frequency, the electrical gradient force can become effective in initiating particle motion toward decreasing electrode gap regions, causing the particle to trigger breakdown. Moreover, it was found that the direction in which a particle advances horizontally is greatly influenced by microdischarge occurrence when the particle bounces very near to the grounded electrode under high-frequency AC voltage, and that when a particle bounces on an electrode, particle-triggered breakdown voltage is decreased by the effect of microdischarge.
Keywords
air; discharges (electric); electrodes; AC voltages; Coulomb force magnitude; atmospheric air; bouncing particle; decreasing electrode gap regions; electrical gradient force; free-conducting particle motion; free-conducting spherical particle; high-frequency AC voltage; microdischarge; nonparallel plane electrodes; particle motion; particle-triggered breakdown; spherical free-conducting particle behavior; spherical particle motion; Breakdown voltage; Dielectrics and electrical insulation; Electric breakdown; Electric fields; Electrodes; Frequency; Gas insulation; Geographic Information Systems; Power system reliability; Stress;
fLanguage
English
Journal_Title
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher
ieee
ISSN
1070-9878
Type
jour
DOI
10.1109/TDEI.2003.1207466
Filename
1207466
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