Optimal Arrangement of Current Leads to Minimize Electromagnetic Force

  • Lee, J. H.
  • Song, J. B.
  • Kim, K. L.
  • Kim, K. J.
  • Kim, M. J.
  • ... Lee, H. G.
  • 외 1명
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초록

An electric current produces a magnetic field around a current lead, which attracts or repels other current leads. The electromagnetic forces interacting between current leads show different tendencies according to the arrangement of the current leads on the top flange of the cryostat and the distances between them. In the case of high-current electric power devices or high-field magnets, the optimal arrangement of the current leads that can minimize the electromagnetic force acting on them is one of the safety issues to be considered. In this paper, the electromagnetic forces exerted on current leads were examined theoretically. The results were confirmed by measuring the strain variations of the current leads using a strain gauge to determine the influence of the electrical and geometrical parameters. From these results, the optimal arrangement method is discussed with three pairs of current leads particularly for high-current electric power devices or high-field magnet applications.

키워드

Current leadelectromagnetic forcehigh-current electrical power devicehigh-field magnet application
제목
Optimal Arrangement of Current Leads to Minimize Electromagnetic Force
저자
Lee, J. H.Song, J. B.Kim, K. L.Kim, K. J.Kim, M. J.Chang, H. M.Lee, H. G.
DOI
10.1109/TASC.2010.2040956
발행일
2010-06
유형
Article; Proceedings Paper
저널명
IEEE Transactions on Applied Superconductivity
20
3
페이지
1741 ~ 1746