Study on Bubble Behavior with the Simulated Electrode System of High Temperature Superconducting Coils for Electric Power System

전력용 고온초전도 코일 모의전극계에서의 기포거동에 관한 연구

  • 석복렬 (현대중공업주식회사 기전연구소) ;
  • 김종구 (현대중공업주식회사 기전연구소)
  • Published : 2001.05.01

Abstract

Bubble behavior is studied with an electrode system which consists of coaxial spiral coil-to-cylindrical electrode with an insulation barrier and spacers and is immersed in liquid nitrogen for simulation of insulation environments in high temperature superconducting(HTS) coils The results show that the bubble behavior Is affected severely by electric field: (1) under low applied voltage bubbles rise by buoyancy, but at higher applied voltage they are trapped in a lower electric field region below the coil electrode, and (2) the trapped bubble flows along the downside of coil electrode if no obstruction is in a groove between coil turns. but it splashes out of the groove after its growing if the obstruction such as spacer-exists.

Keywords

References

  1. ORNL/Sub/45000069 High Temperature Superconductivity : The Product and Their Benefits ( 2000 Edition ) L.R.Lawrence;C.Cox;D.Broman
  2. 초전도응용 전력기기 사업타당성 조사 김익모;김종구;최영찬;송태헌
  3. Cryogenics v.38 no.11 Electrical Insulation Specification and Design Method for Superconducting Power Equipment M.Hara;J.Gerhold
  4. Handbook of Applied Superconductivity Dielectric Properties of Cryogens J.Gerhold;B.Seeber(ed.)
  5. IEEE Spectrum v.34 no.7 Transforming Transformers S.P.Mehta;N.Aversa;M.S.Walker
  6. IEEE Trans. on Applied Superconductivity v.7 no.2 High Temperature Superconducting Fault Current Limiter Development E.M.Leung;A.Rodriguez;G.W.Albert;B.Burley;M.Dew;P.Gurrola;D.Madura;G.Miyata;K.Muehleman;L.Nguyen;S.Pidcoe;S.Ahmed;G.Dishaw;C.Nieto;I.Kersenbaum;B.Gamble;C.Russo;H.Boenig;D.Peterson;L.Motowildo;P.Haldar
  7. Cryogenics The Influence of Electric Field on Heat Transfer in Boiling J.Rutkowski