층간 단락된 3상 몰드변압기의 소손 패턴 및 금속 조직 해석

Analysis of the Damage Patterns and Metal Structure of 3 Phase Mold Transformers to which Interlayer Short-circuits have Occurred

  • 최충석 (전주대학교 소방안전공학과)
  • 투고 : 2010.06.16
  • 심사 : 2010.11.29
  • 발행 : 2010.12.31

초록

The purpose of this study is to analyze the damage patterns and metal structure of 3 phase mold transformers collected from places where accidents have occurred. Compared to an oil-immersed transformer, a mold transformer has the advantage of requiring a smaller installation area and can be kept clean, while its disadvantages include the fact that abnormal symptoms of an accident are difficult to discover and its repair is impossible. The capacity of the mold transformers collected from places where accidents have occurred was 200kVA with primary voltages being F23,900V, R22,900V, 21,900V, 20,900V, 19,900V, etc., as well as secondary voltages being 380V, 220V, etc. It was found from the analysis on the diffusion of combustion in the damaged mold transformers that fire occurred first inside the U-phase primary winding and that carbonization and heat were diffused to V-phase and W-phase in V-pattern. In addition, from the analysis on the cross-sectional structure of the metal of the melted high voltage winding using a metallurgical microscope, it was found that the boundary surface, voids, and columnar structure were formed when an interlayer short-circuit had occurred Therefore, even though it is not possible to find the cause for the occurrence of an interlayer short-circuit at the inner side of the primary winding, it is thought that, due to the thermal energy generated when the short-circuit occurred, the heat source was diffused to the upper side and outside, causing a secondary accident.

키워드

참고문헌

  1. W. M. Flanagan, "Handbook of Transformer Design and Applications 2nd Edition," McGraw Hill, Chap. 1,8,11,1992.
  2. 고태언 외 7, "전기기기", pp. 245-368, 2007.
  3. 손제봉 외 4, "전기기기", pp. 104-204, 형설출판사 2007.
  4. 최충석 외 5, "전기화재공학", 도서출판 동화기술, pp. 189-198, 202, 2004.
  5. 한국표준협회, "한국산업규격 KS C 4311", 2002.
  6. 한국표준협회, "한국산업규격 KS C 2516", 2002.
  7. 최충석 외 2, "과전류에 의해 용단된 소선의 특성 해석에 관한 연구", 한국산업안전학회 논문지, 제19권, 제1권, pp. 60-65, 2004.
  8. 최충석 외 2, "외부화염에 의해 소손된 비닐코드의 단락 특성에 관한 연구", 한국화재소방학회 논문지, 제18권, 제4호, pp. 72-77, 2004.
  9. 최충석, 김향곤, "열 스트레스에 의한 비닐절연전선의 탄화 패턴 및 결정 구조의 변화", 대한전기학회논문지, 제57P권, 제3호, pp. 332-337, 2008.
  10. 최충석 외 3, "직렬아크에 따른 도체의 산화물 증식 및 전압 파형 분석" 대한전기학회논문지, 제55P권, 제3호, pp. 146-152, 2006.
  11. 최충석, "층간 단락에 의해 소손된 3상 몰드변압기의 패턴 해석", 한국안전학회춘계학술대회, p.9, 2010.