DocumentCode
1148631
Title
Prebreakdown phenomena in mineral oil under step and ac voltage in large-gap divergent fields
Author
Rain, P. ; Lesaint, O.
Author_Institution
Lab. d´´Electrostatique et de Mater. Dielectr., CNRS, Grenoble, France
Volume
1
Issue
4
fYear
1994
fDate
8/1/1994 12:00:00 AM
Firstpage
692
Lastpage
701
Abstract
This paper presents an experimental study of the propagation of prebreakdown phenomena in transformer oil, in large point-plane gaps (5 to 20 cm), in positive polarity under step and ac voltages. The prebreakdown phenomena are characterized via the simultaneous recordings of transient currents, charges, photocurrents, and high-speed photographs of the emitted light. In these experimental conditions, prebreakdown phenomena in oil are basically composed of weakly luminous branched filaments, most of the time not connected to the point electrode, and propagating continuously. Bright luminous fast discharges reilluminate periodically the main branch of the propagating discharge from the point electrode to the extremity of these weakly luminous filaments. Below the breakdown voltage, streamers stop at an average length which increases linearly with the voltage. Above a critical length, they cannot stop any more and lead to breakdown. The main propagation velocity remains constant throughout the propagation. These observations, which present a number of similarities with leader phenomena in gases, are then discussed
Keywords
electric breakdown of liquids; high-speed optical techniques; impulse testing; insulating oils; insulation testing; 5 to 20 cm; high-speed photographs; large-gap divergent fields; mineral oil; photocurrents; positive polarity; prebreakdown phenomena; propagation velocity; streamers; transient currents; weakly luminous branched filaments; Breakdown voltage; Electric breakdown; Electrodes; Extremities; Gases; Minerals; Oil insulation; Optical propagation; Petroleum; Photoconductivity;
fLanguage
English
Journal_Title
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher
ieee
ISSN
1070-9878
Type
jour
DOI
10.1109/94.311712
Filename
311712
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