DocumentCode
2382648
Title
Line Arrester Energy Discharge Duties
Author
McDermott, Thomas E.
Author_Institution
EnerNex Corp., Pittsburgh, PA
fYear
2006
fDate
21-24 May 2006
Firstpage
450
Lastpage
454
Abstract
Surge arresters could practically eliminate lightning flashovers on distribution lines, if they are properly deployed in large enough numbers, and if they could survive the current and energy discharge duties imposed by high-magnitude lightning strokes. The discharge duty depends on complex interactions between the arrester locations, grounding, shielding from nearby objects, and the local lightning environment. But many factors of traditional concern with distribution arrester application, such as the lead length, surge front time, and protective margin, play little or no role in the discharge duty. Probabilistic methods determine the expected arrester failure rate. This should be much lower than the original flashover rate on the line insulation, otherwise the design is not acceptable. A transient program such as EMTP/ATP provides the best tool for calculating the discharge duty, but simplified methods are also available
Keywords
arresters; flashover; insulation; lightning; lightning protection; power distribution lines; power distribution protection; probability; ATP; EMTP; arrester failure rate; arrester grounding; arrester shielding; discharge duty; distribution lines; energy discharge; high-magnitude lightning strokes; lightning flashovers elimination; line arrester; line insulation; probabilistic methods; surge arresters; transient program; Arresters; EMTP; Fault location; Flashover; Lightning; Power system protection; Surge protection; Surges; Tail; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Transmission and Distribution Conference and Exhibition, 2005/2006 IEEE PES
Conference_Location
Dallas, TX
Print_ISBN
0-7803-9194-2
Type
conf
DOI
10.1109/TDC.2006.1668535
Filename
1668535
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