Influence of the Turn-to-Turn Contact Electrical Resistance on the Thermal Stability in Meter-Class No-Insulation REBCO Pancake Coils During a Local Normal-State Transition
被引:21
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作者:
Katsumata, Kazuki
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机构:
Waseda Univ, Tokyo 1698555, JapanWaseda Univ, Tokyo 1698555, Japan
Katsumata, Kazuki
[1
]
Wang, Tao
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机构:
Waseda Univ, Tokyo 1698555, JapanWaseda Univ, Tokyo 1698555, Japan
Wang, Tao
[1
]
Ishiyama, Atsushi
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机构:
Waseda Univ, Tokyo 1698555, JapanWaseda Univ, Tokyo 1698555, Japan
Ishiyama, Atsushi
[1
]
Noguchi, So
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机构:
Hokkaido Univ, Sapporo, Hokkaido 0600808, JapanWaseda Univ, Tokyo 1698555, Japan
Noguchi, So
[2
]
Monma, Katsutoshi
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机构:
Hokkaido Univ, Sapporo, Hokkaido 0600808, JapanWaseda Univ, Tokyo 1698555, Japan
Monma, Katsutoshi
[2
]
Nagaya, Shigeo
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机构:
Chubu Elect Power Co Inc, Nagoya, Aichi 4598522, JapanWaseda Univ, Tokyo 1698555, Japan
Nagaya, Shigeo
[3
]
Watanabe, Tomonori
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机构:
Chubu Elect Power Co Inc, Nagoya, Aichi 4598522, JapanWaseda Univ, Tokyo 1698555, Japan
Watanabe, Tomonori
[3
]
机构:
[1] Waseda Univ, Tokyo 1698555, Japan
[2] Hokkaido Univ, Sapporo, Hokkaido 0600808, Japan
[3] Chubu Elect Power Co Inc, Nagoya, Aichi 4598522, Japan
Excitation delay;
local normal-state transition;
no-insulation coil;
PEEC-thermal coupled model;
D O I:
10.1109/TASC.2017.2657679
中图分类号:
TM [电工技术];
TN [电子技术、通信技术];
学科分类号:
0808 ;
0809 ;
摘要:
Inmagnetic resonance imaging and nuclear magnetic resonance applications, it is important that the high-temperature superconducting coils provide a high magnetic field in a miniaturized form factor. Our research group considers these requirements to be compatiblewith no-insulation (NI) coils in which the thickness of the Cu stabilization layer and the turn-to-turn contact electrical resistance are key parameters that enable both high current densities and high thermal stabilities. When the Cu stabilization layer is thin, the current density is impaired, but the thermal stability is improved. If the turn-to-turn contact electrical resistance is very large, then the characteristics of the NI REBCO coil approach the characteristics of conventional insulated coils, and the thermal stability may be degraded. However, when the turn-to-turn contact electrical resistance is large, the excitation delay time is reduced. In this study, we used a combination of the partial element equivalent circuit method and the finite element method to perform a current distribution and thermal analysis of the behavior of NI REBCO coils when a local normal-state transition occurs. We also considered the appropriate turn-to-turn contact electrical resistance that could shorten the excitation delay time as much as possible while still suppressing the formation of hotspots, which is a disadvantage of the NI REBCO coil.