首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Design and Quench Protection Analysis of a 9 T NbTi Superconducting Magnet for a Large-Bore EMPS
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Design and Quench Protection Analysis of a 9 T NbTi Superconducting Magnet for a Large-Bore EMPS

机译:大孔EMPS的9 T NBTI超导磁体的设计与淬火保护分析

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A 9 T NbTi superconducting magnet with a large bore is designed and will be fabricated for an EMPS (electro-magnetic property measurement system) whose sample space is 50 & x00A0;mm in diameter. To match the large sample space of the system, the winding bore of the magnet should exceed 89 & x00A0;mm in diameter. Because the winding diameter is much larger than a conventional 9 & x00A0;T class NbTi superconducting magnets, wire selection and magnet design are very important and difficult in this research. An optimal design process with a genetic algorithm considering the critical current, magnetic stress, thermal stability and field uniformity is carried out to develop the 9 T large bore NbTi EMPS magnet. The design algorithm calculates the structure and dimensions of the magnet to minimize the total volume while satisfying the constraints related to the stability of the magnet [Jang et & x00A0;al. (2018)]. To evaluate the thermal stability of the magnet with a protection circuit, a quench analysis is also implemented considering the two boundaries among three adjacent coaxial NbTi coils. The maximum hot spot temperature of the magnet is calculated based on the quench analysis model via a numerical analysis and an electrical circuit simulation. After the optimized design is created, fabrication of the 9 T large bore NbTi magnet will be conducted for its application to the large bore EMPS.
机译:设计了具有大孔的9T NBTI超导磁铁,并将为EMPS(电磁特性测量系统)制造,其样本空间为50&x00A0;毫米的直径。为了匹配系统的大样本,磁铁的卷绕孔应超过直径89&x00a0; mm。因为绕组直径远大于传统的9&X00A0; T级NBTI超导磁体,线材选择和磁铁设计在这项研究中非常重要且困难。考虑临界电流,磁力,热稳定性和现场均匀性的遗传算法的最佳设计过程是为了开发9 T大孔NBTI EMPS磁体。设计算法计算磁体的结构和尺寸,以最小化总体积,同时满足与磁体的稳定性相关的约束[jang et&x00a0; al。(2018)]。为了评估具有保护电路的磁体的热稳定性,还考虑了三个相邻同轴NBTI线圈中的两个边界来实现淬火分析。基于淬火分析模型通过数值分析和电路仿真计算磁体的最大热点温度。在创建优化的设计之后,将对9T大孔NBTI磁体的制造进行其应用于大孔EMPS。

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