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논문검색

Current overshoot operation of a REBCO magnet to mitigate SCF

초록

영어

Due to large in-field current carrying capacity and strong mechanical strength, a REBCO wire has been regarded as a viable high temperature superconductor (HTS) option for high field MRI and > 1 GHz (>23.5 T) NMR magnets. However, a REBCO magnet is well known to have an inherent problem of field inhomogeneity, so-called ‘Screening Current induced magnetic Field (SCF)’. Recently, ‘field shaking’ and ‘current overshoot operation’ techniques have been successfully demonstrated to mitigate the SCF and enhance the field homogeneity by experiments. To investigate the effectiveness of current overshooting operation technique, a numerical simulation is conducted for a test REBCO magnet composed of a stack of double pancake coils using ‘2D edge-element magnetic field formulation’ combined with ‘domain homogenization’ scheme. The simulation result demonstrates that an appropriate amount of current overshoot can negate the SCF. To verify the simulation results, current overshoot experiments are conducted for the REBCO magnet in liquid nitrogen. Experimental results also demonstrate the possible application of current overshoot technique to mitigate the SCF and enhance the field homogeneity.

목차

Abstract
1. INTRODUCTION
2. REBCO MAGNET
2.1. Fabrication of the magnet
2.2. Critical current measurement
3. NUMERICAL ANALYSIS OF SCF
3.1. Numerical analysis model
3.2. Numerical analysis results
4. EXPERIMENT
4.1. Experimental set up
4.2. Experimental results
5. DISCUSSION
6. CONCLUTION
ACKNOWLEDGMENT
REFERENCES

저자정보

  • Changhyung Lee School of Mechanical Engineering, Changwon National University, Changwon, Korea, SuperGenics Co. Ltd., Changwon, Korea
  • Seungyong Hahn Department of Electrical and Computer Engineering, Seoul National University, Seoul, Korea
  • Jeseok Bang Department of Electrical and Computer Engineering, Seoul National University, Seoul, Korea
  • Jeonwook Cho Korea Electrotechnology Research Institute (KERI), Changwon, Korea
  • Seokho Kim School of Mechanical Engineering, Changwon National University, Changwon, Korea

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