DocumentCode
3329710
Title
Contaminated connector and surface atmospheric flashover phenomena: a preliminary investigation
Author
Buneo, J.D. ; Zirnheld, J.L. ; Burke, K.M. ; Sarjeant, W.J.
Author_Institution
Energy Syst. Inst., Univ. Buffalo, NY, USA
fYear
2002
fDate
30 June-3 July 2002
Firstpage
414
Lastpage
416
Abstract
Contaminated connector and surface flashover has been shown to often catastrophically damage energy systems. A greater general understanding is needed to be able to design modem energy systems around this unique failure process. A flashover is a disruptive discharge through air around or over the surface of insulation produced by the application of voltage wherein the breakdown path becomes sufficiently ionized to maintain an electric arc. Flashover in and on insulators has in the past been shown to start near the interface between insulator, conductor and air (or some other insulating medium) and is known as the triple point. The focus of this initial study is on the adverse effects of flashover on thin polyester and polypropylene films cut to initial lengths and widths of 12"×3/4" respectively, representative of long path flashover in contaminated military and industrial systems. Flashover on the samples was initiated by the application of 2400 Vac. Preliminary results have shown that the thin polyester film is resistant to flashover formation and sublimates upon the application of the external AC voltage. However, polypropylene film was able to sustain the flashover without sublimating. Upon further investigation, the polypropylene would sustain flashover when scaled down linearly in voltage and length to a minimum of 150 Vac and 3/4" length. These initial studies of AC flashover on rather long contaminated surfaces (resistivity of ∼7 ohms/square) are to be extended to DC behavior as well as assessment of flashover robustness with increasing surface resistivity in order to allow improved connector and interface engineering design algorithms to be developed for future systems.
Keywords
flashover; insulator contamination; insulator testing; surface discharges; arcs; breakdown path; contaminated connector flashover; disruptive discharge; insulation surface; insulator breakdown tests; surface flashover; Breakdown voltage; Conductivity; Conductors; Connectors; Defense industry; Dielectrics and electrical insulation; Flashover; Modems; Surface contamination; Surface discharges;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Modulator Symposium, 2002 and 2002 High-Voltage Workshop. Conference Record of the Twenty-Fifth International
ISSN
1076-8467
Print_ISBN
0-7803-7540-8
Type
conf
DOI
10.1109/MODSYM.2002.1189504
Filename
1189504
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