DocumentCode :
17129
Title :
Charging Behavior in No-Insulation REBCO Pancake Coils
Author :
Xudong Wang ; Tao Wang ; Nakada, Erika ; Ishiyama, Atsushi ; Itoh, Ryusei ; Noguchi, So
Author_Institution :
Waseda Univ., Tokyo, Japan
Volume :
25
Issue :
3
fYear :
2015
fDate :
Jun-15
Firstpage :
1
Lastpage :
5
Abstract :
This paper presents analytical studies on the charging characteristics of a no-insulation (NI) REBCO pancake coil. A partial element equivalent circuit (PEEC) model has been developed to evaluate the local current paths in NI REBCO pancake coils. The PEEC model is able to consider the asymmetry of the coil winding, the partial turn-to-turn contact electrical resistance, and the partial self and mutual inductances. The analysis results are compared with previous charging experimental results and simulations using a simplified parallel equivalent circuit (SPEC) model to validate the proposed approach with the PEEC model. To investigate the charging characteristics of a meter-class NI REBCO pancake coil, numerical simulations were performed by using the PEEC and SPEC models as a parameter of the turn-to-turn contact electrical resistance. In addition, the magnetic field in a 3-T NI REBCO coil was calculated by the SPEC model to clarify the charging delay of a practical scale magnet.
Keywords :
equivalent circuits; numerical analysis; superconducting coils; PEEC model; SPEC model; charging behavior; coil winding asymmetry; local current path evaluation; magnetic field; magnetic flux density 3 T; meter-class NI REBCO pancake coil; mutual inductances; no-insulation REBCO pancake coils; numerical simulations; partial element equivalent circuit model; partial self-inductances; partial turn-to-turn contact electrical resistance; simplified parallel equivalent circuit model; turn-to-turn contact electrical resistance; Analytical models; Coils; Delays; Integrated circuit modeling; Nickel; Numerical models; Thermal stability; Charging delay; high-temperature superconductors; no-insulation (NI) REBCO coil; no-insulation REBCO coil; partial element equivalent-circuit (PEEC) model; partial element equivalent-circuit model; superconducting coils;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2014.2365623
Filename :
6939656
Link To Document :
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