DocumentCode :
950572
Title :
Surface flashover sustained by electrostatic surface charge on epoxy resin insulator in SF6
Author :
Wang, C.X. ; Wilson, A. ; Watts, M.W.
Author_Institution :
Nat. Grid Co., Leatherhead, UK
Volume :
140
Issue :
5
fYear :
1993
fDate :
9/1/1993 12:00:00 AM
Firstpage :
346
Lastpage :
350
Abstract :
The importance of studying the influence of accumulated surface charge on surface flashover is demonstrated by on-site trapped charge measurements. Using a hemispherically tipped electrode on an epoxy resin plate, it has been shown that, at a critical surface energy density, a back flashover can be induced when the DC is suddenly removed. The back-flash threshold levels were measured at different pressures and for two electrode-insulator geometries. The concept of minimum surface energy density Em capable of sustaining surface flashover was formulated. Various experimental observations can be interpreted by the concept, such as the aforementioned back-flash phenomenon, the close proximity to the insulator surface that flashover path tends to seek etc. From the measured back-flash threshold voltage and field analysis of the two geometries, the minimum surface energy density Em necessary for sustaining continuous surface discharge has been calculated. The compilation of the results for both geometries at different pressures is presented.
Keywords :
charge measurement; flashover; gaseous insulation; polymers; sulphur compounds; surface discharges; surface energy; SF6; accumulated surface charge; back flashover; back-flash threshold levels; critical surface energy density; electrode-insulator geometries; electrostatic surface charge; epoxy resin insulator; epoxy resin plate; field analysis; hemispherically tipped electrode; minimum surface energy density; on-site trapped charge measurements; surface flashover; threshold voltage;
fLanguage :
English
Journal_Title :
Science, Measurement and Technology, IEE Proceedings A
Publisher :
iet
ISSN :
0960-7641
Type :
jour
Filename :
234747
Link To Document :
بازگشت