首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Design and Test of High-$T_C$Superconducting Coils for a Three-Phase 10.5 kV/1.5 kA Fault Current Limiter
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Design and Test of High-$T_C$Superconducting Coils for a Three-Phase 10.5 kV/1.5 kA Fault Current Limiter

机译:三相10.5 kV / 1.5 kA故障限流器的高$ T_C $超导线圈的设计和测试

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摘要

The design and test of High Temperature Superconducting (HTS) coils for a three-phase 10.5 kV/1.5 kA HTS fault current limiter (FCL) are described. It is well known that the critical current$(mmb I_mmb c)$of HTS materials is very sensitive to the orientation of fields. In the design of HTS coils, the value of the perpendicular component of magnetic field$( B_perp)$should be reduced, and the coils should be wound and jointed easily. In order to enlarge the current carrying capacity of the coil, the double pancakes in the coils were connected in parallel. Based on the field distribution in the coil and the current distribution in each double pancake, the design of the coil was optimized. Three coils wound with Bi-2223/Ag tape have been developed and tested in liquid nitrogen.
机译:描述了用于三相10.5 kV / 1.5 kA HTS故障限流器(FCL)的高温超导(HTS)线圈的设计和测试。众所周知,高温超导材料的临界电流(mmb I_mmb c)$对场的方向非常敏感。在HTS线圈的设计中,应减小磁场的垂直分量$(B_perp)$的值,并且线圈应易于缠绕和连接。为了增大线圈的载流能力,将线圈中的双薄煎饼并联连接。根据线圈中的磁场分布和每个双层煎饼中的电流分布,优化了线圈的设计。已经开发了三个用Bi-2223 / Ag胶带缠绕的线圈,并在液氮中进行了测试。

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