A Study on the Normal-zone Propagation Velocity in a Superconducting Coil

초전도 코일의 국부 퀜치 발생시 상전도영역 전파속도 해석

  • 배진한 (건국대 대학원 전기공학과) ;
  • 서용석 (삼성전자 마이크로 본부 마이크로 사업부 전력전자) ;
  • 오윤상 (연세대 대학원 전기공학과) ;
  • 고태국 (연세대 공대 전기공학과)
  • Published : 1994.07.01

Abstract

Longitudimal and transverse normal zone propagations in the superconducting coil are analyzed and propagation velocity is derived from the heat balance equations in the propagating boundary region. The results of applying to the specific superconducting wire show that propagation velocity is linearly proportional to the transport current and increasing ramp current speeds up the longitudinal velocity by 1.22[m/s] under the applied field of 2T. Transient heat transfer has a significant effect on the normal zone propagation velocity and it decreases longitudinal velocity by 5.2[m/s] under the applied field of 2T as being compared to the steady-state heat transfer. Increasing ramp current speeds up the Z-axis transverse propagation velocity by 0.042[m/s] and transverse velocity of R and Z axis is costant regardless of the current flows.

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