DocumentCode :
171829
Title :
A physical model for inception and propagation of upward lightning leader from a 1200 kV AC power transmission line
Author :
Devadiga, Anurag A. ; Thomas, M.J.
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Sci., Bangalore, India
fYear :
2014
fDate :
11-18 Oct. 2014
Firstpage :
215
Lastpage :
219
Abstract :
UHV power transmission lines have high probability of shielding failure due to their higher height, larger exposure area and high operating voltage. Lightning upward leader inception and propagation is an integral part of lightning shielding failure analysis and need to be studied in detail. In this paper a model for lightning attachment has been proposed based on the present knowledge of lightning physics. Leader inception is modeled based on the corona charge present near the conductor region and the propagation model is based on the correlation between the lightning induced voltage on the conductor and the drop along the upward leader channel. The inception model developed is compared with previous inception models and the results obtained using the present and previous models are comparable. Lightning striking distances (final jump) for various return stroke current were computed for different conductor heights. The computed striking distance values showed good correlation with the values calculated using the equation proposed by the IEEE working group for the applicable conductor heights of up to 8 m. The model is applied to a 1200 kV AC power transmission line and inception of the upward leader is analyzed for this configuration.
Keywords :
lightning protection; power transmission protection; AC power transmission line; corona charge; inception model; leader inception; lightning attachment; lightning induced voltage; lightning physics; lightning striking distances; return stroke current; upward leader channel; upward lightning leader; voltage 1200 kV; Lead; Lightning; Lightning striking distance; Transmission line; Upward leader inception;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Lightning Protection (ICLP), 2014 International Conference o
Conference_Location :
Shanghai
Type :
conf
DOI :
10.1109/ICLP.2014.6973124
Filename :
6973124
Link To Document :
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