DocumentCode
1444302
Title
Live working on vintage 138 kV steel lattice structures
Author
Gela, George ; Fox, Harold J., Jr. ; Ferraro, Raymond ; Verdecchio, Tom ; Lyons, Paul
Author_Institution
EPRI, Lenox, MA, USA
Volume
16
Issue
1
fYear
2001
fDate
1/1/2001 12:00:00 AM
Firstpage
6
Lastpage
11
Abstract
Live working on very old structures often poses unique challenges, such as dealing with the effects of arc rings and the behavior of old insulators. This paper presents the results of tests conducted for Public Service Electric and Gas to confirm that very old broken insulators can be replaced live on 138 kV double-circuit steel lattice structures with suspension I-strings. Each string had nine porcelain units and two large arc rings with a clear air ring-to-ring distance of 1.07 m (42´´). Issues addressed in this paper include: the effects of broken and shorted insulators; the effects of live working tools and workers; and the possibility of selective barehanding. For the above-listed conditions, switching impulse tests were performed on a full-scale mockup of the structure. Actual hardware retrieved from service was used for the mockups. Workers were represented by mannequins. The paper gives switching impulse test results for the outlined conditions. Test data suggest that there is little difference between broken and shorted insulators in the tested cases. However, the CIGRE formula for calculation of the effects of defective insulators is shown to be sufficiently conservative
Keywords
impulse testing; maintenance engineering; poles and towers; porcelain insulators; steel; switching; 1.07 m; 138 kV; 42 in; CIGRE formula; Public Service Electric and Gas; arc rings; broken insulators; clear air ring-to-ring distance; double-circuit steel lattice structures; live line maintenance; live working; live working tools; mannequins; old insulators; porcelain units; selective barehanding; shorted insulators; suspension I-strings; switching impulse tests; switching sparkover; vintage steel lattice structures; Dielectrics and electrical insulation; Impulse testing; Insulator testing; Lattices; Occupational stress; Porcelain; Safety; Steel; Surges; Voltage;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/61.905569
Filename
905569
Link To Document