DocumentCode :
1382366
Title :
Overturning Force Simulation on Chain of Quenches of Toroidal HTS-SMES
Author :
Oga, Y. ; Noguchi, S. ; Igarashi, H.
Author_Institution :
Grad. Sch. of Inf. Technol., Hokkaido Univ., Sapporo, Japan
Volume :
22
Issue :
3
fYear :
2012
fDate :
6/1/2012 12:00:00 AM
Firstpage :
4701904
Lastpage :
4701904
Abstract :
In recent years, many toroidal HTS-SMES consisting of some superconducting element coils have been investigated and designed. In stable operation, the electromagnetic force applying to the superconducting element coils maintains balance because of the toroid structure and the same transport current of each superconducting element coil. However, if one of the superconducting element coils transitioned into a resistive state, the balance of the electromagnetic force would be broken down, and then the huge electromagnetic force would work onto the superconducting element coils. The huge electromagnetic force may overturn the superconducting element coils, and consequently a large accident occurs. However, the behavior of the overturning electromagnetic force after the transition of some superconducting element coils into the resistive state has been not yet well investigated. For the design of the HTS-SMES magnet, it is, therefore, necessary to investigate the overturning electromagnetic force on the design stage. We have developed a simulation code to investigate the behavior of the overturning electromagnetic force on the toroidal HTS-SMES system after the transition of one superconducting element coil into the resistive state. The magnetic field and the circuit analysis are coupled and solved in the developed simulation code.
Keywords :
electromagnetic forces; high-temperature superconductors; superconducting coils; superconducting critical field; superconducting magnet energy storage; superconducting magnets; HTS-SMES magnet; circuit analysis; magnetic field; overturning electromagnetic force; quench chain; superconducting element coils; toroid structure; toroidal HTS-SMES; Electromagnetic forces; Force; Superconducting coils; Superconducting films; Superconducting magnetic energy storage; Superconducting magnets; Electromagnetic force; HTS-SMES; magnetic field simulation; superconducting magnet;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2011.2177430
Filename :
6086721
Link To Document :
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