DocumentCode :
171909
Title :
Modelling and analysis of different representations for high voltage tower structures
Author :
Plesch, J. ; Hoehn, T. ; Pack, S.
Author_Institution :
Inst. of High Voltage Eng. & Syst. Performance, Graz Univ. of Technol., Graz, Austria
fYear :
2014
fDate :
11-18 Oct. 2014
Firstpage :
446
Lastpage :
450
Abstract :
To evaluate the transient stress in the high voltage transmission system, numerical transient simulation programs are used. Transient stress is caused by lightning discharges, switching operations, faults etc. and may influence the operation of high voltage equipment. For the analysis and evaluation of flashovers, suitable numerical simulation models for high voltage tower structures are required. Also the modelling of arcing horns and the frequency dependent footing resistance are very important parts, which have to be considered. In case of lightning discharges to ground wire and the phase conductors, it is necessary to evaluate if a shielding failure can occur. To focus of this paper is to evaluate the probability of lightning strikes and the number of lightning strikes to overhead lines with the use of the electro-geometrical model.
Keywords :
earthing; failure analysis; flashover; high-voltage engineering; lightning; poles and towers; power overhead lines; power system transients; power transmission faults; probability; shielding; arcing horn; electrogeometrical model; flashover analysis; flashover evaluation; frequency dependent footing resistance; ground wire; high voltage equipment; high voltage tower structure; high voltage transmission system; lightning discharge; lightning strike probability; numerical simulation model; numerical transient simulation program; overhead line; phase conductor; shielding failure; switching operation; transient stress; transmission fault; Discharges (electric); Lightning; Switches;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Lightning Protection (ICLP), 2014 International Conference o
Conference_Location :
Shanghai
Type :
conf
DOI :
10.1109/ICLP.2014.6973165
Filename :
6973165
Link To Document :
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