DocumentCode :
52660
Title :
Equivalent surface conductivity of ice accumulated on insulators during development of AC and DC flashovers arcs
Author :
Taheri, S. ; Farzaneh, Masoud ; Fofana, I.
Author_Institution :
NSERC/Hydro-Quebec/UQAC Ind. Dept. on Atmos. Icing of Power Network Equip. (CIGELE) & Canada, Univ. du Quebec a Chicoutimi, Chicoutimi, QC, Canada
Volume :
20
Issue :
5
fYear :
2013
fDate :
Oct. 2013
Firstpage :
1789
Lastpage :
1798
Abstract :
Surface conductivity of ice was investigated during the development of AC and DC arcs on ice-covered insulators. To determine this parameter, an approach based on fluid mechanics combined with experimental measurements of the water film flow rate and conductivity was used. In particular, the variation of the thickness and volume conductivity of the water film as well as the mechanisms of discharge initiation and arc development on the surface of an ice-covered post insulator were studied. The effect of ice surface conductivity on arc propagation velocity was evaluated for different freezing water conductivities using highspeed video camera techniques. Empirical models were proposed to account for equivalent surface conductivity dynamics during the flashover process. The derived equivalent surface conductivity was used to improve existing dynamic models to predict the minimum flashover voltage of the ice-covered insulator. The computed results from the models were in good agreement with those obtained experimentally.
Keywords :
arcs (electric); flashover; ice; insulators; surface conductivity; AC flashovers arcs; DC flashovers arcs; arc propagation velocity; discharge initiation; equivalent surface conductivity; fluid mechanics; freezing water conductivities; highspeed video camera techniques; ice covered insulators; ice surface conductivity; minimum flashover voltage; volume conductivity; water film flow rate; Conductivity; Films; Flashover; Ice surface; Insulators; Surface treatment; Equivalent surface conductivity; arc velocity; flashover; ice-covered insulator surface; water film;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2013.6633710
Filename :
6633710
Link To Document :
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