30 Magnetic Analysis on Temperature Rise Resulting from Induced Eddy current In Gas Insulated Switchgear

3차원 자계해석을 통한 GIS 모선의 와전류에 의한 온도 상승

  • Lee, B.W. (Electric Equipment Team, Electrotechnology R&D Center, LG Industrial Systems) ;
  • Sohn, J.M. (Electric Equipment Team, Electrotechnology R&D Center, LG Industrial Systems) ;
  • Kang, J.S. (Electric Equipment Team, Electrotechnology R&D Center, LG Industrial Systems) ;
  • Seo, J.M. (Electric Equipment Team, Electrotechnology R&D Center, LG Industrial Systems)
  • 이방욱 (LG 산전 전력연구소 전력기기연구팀) ;
  • 손종만 (LG 산전 전력연구소 전력기기연구팀) ;
  • 강종성 (LG 산전 전력연구소 전력기기연구팀) ;
  • 서정민 (LG 산전 전력연구소 전력기기연구팀)
  • Published : 1999.07.19

Abstract

In this work, temperature rise and eddy current distribution on the enclosure and conductor of 3 pole gas insulated switchgear were investigated using analytical and experimental measures. The design of the diameters of the conductors and the enclosures of a meal clad gas insulated switchgear is primarily based on the insulation requirements. It is very difficult problem to predict the temperature rise of enclosed switchgear due to the complexity of the phenomena of heat transfer and existence of eddy current loss. To overcome this situations, we focused on the eddy current distribution on the enclosure of switchgear caused by high current 3 pole conductor as a fundamental basis. The experimental results about temperature distribution of 3 pole gas insulated switchgear were reported and measurements are compared with predictions of three-dimensional thermal model for eddy current analysis. As a result, three dimensional numerical analysis found to be in close relationship with experimental results and thermal model is efficient to predict the abnormal temperature rise in switchgear.

Keywords