DocumentCode
1398464
Title
The effect of tip curvature on the prebreakdown streamer structure in cyclohexane
Author
Yamashita, H. ; Yamazawa, K. ; Wan, Y.S.
Author_Institution
Dept. of Electron. & Electr. Eng., Keio Univ., Yokohama, Japan
Volume
5
Issue
3
fYear
1998
fDate
6/1/1998 12:00:00 AM
Firstpage
396
Lastpage
401
Abstract
In this paper the effect of tip curvature on the generation and propagation of prebreakdown density change streamer in cyclohexane was investigated. The streamer inception voltage increased with tip curvature, which was higher for a positive point than a negative one. The initial structure of the streamer was a single filament for both polarities in cyclohexane. For a negative point, the streamer structure changed from sphere to hemisphere, pagoda and bush-like form with increasing tip curvature and applied voltage. A slim channel connecting the streamer with needle tip was clearly observed for tip radii >5 μm, while it was not for those <3 μm. For positive streamers, on the other hand, it changed from slow bush-like form to fast filamentary with increasing tip curvature and applied voltage. Both magnitude and propagating speed of the streamer at its inception voltage increased with a tip curvature. After the growth stopped, they broke up into small bubbles and contracted with damped oscillation. From the spatial distribution of the field strength between the point and plane calculated by the finite element method, it was found that there exists a specific distance from the tip where the field strength is equal under any tip radii used in this study for both polarities. This distance and field strength may considered to be the minimum length and field for an electron avalanche in liquid
Keywords
dielectric liquids; discharges (electric); electric breakdown; finite element analysis; organic compounds; cyclohexane; dielectric liquid; electron avalanche; field strength; finite element method; inception voltage; point-plane geometry; prebreakdown density change streamer; tip curvature; Dielectric liquids; Electrons; Finite element methods; Joining processes; Microscopy; Needles; Oil insulation; Threshold voltage;
fLanguage
English
Journal_Title
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher
ieee
ISSN
1070-9878
Type
jour
DOI
10.1109/94.689429
Filename
689429
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