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Basic Design and Progress of Central Solenoid Model Coil for CFETR

机译:CFETR中央螺线管模型线圈的基本设计与进展

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The central solenoid model coil (CSMC) project of China fusion engineering test reactor (CFETR) began in 2014 and the purpose is to develop and verify the manufacture technology of the large-scale superconducting magnet. The Nb 3Sn cable-in-conduit-conductor (CICC) is chosen for CFETR CSMC as the best conductor type because of 12 T field and 1.5 m inner diameter design requirement. The CFETR CSMC consists of two coaxial solenoid coils named Nb3 Sn coil in the high field region and NbTi coil in the low field region to optimize the manufacture cost effectively. The maximum field of the Nb3Sn and NbTi coil can reach to 12 T and 6.1 T, respectively, when the operating current is 47.65 kA. In this paper, first, the basic design aim and operation requirements of CFETR CSMC are summarized. Second, the characteristics of Nb3Sn superconducting strands and CICCs are described in detailed. Subsequently, the basic structure design of CFETR CSMC is presented in the third part. The current sharing temperature and coupling loss measurement of Nb3Sn CICC sample, as the most important stage assessment, are performed in SUTLAN test facility and some meaningful conclusions are.
机译:中国聚变工程试验堆(CFETR)的中央螺线管模型线圈(CSMC)项目于2014年启动,目的是开发和验证大型超导磁体的制造技术。由于12 T场和1.5 m的内径设计要求,CFETR CSMC选择了Nb 3Sn导管中电缆(CICC)作为最佳导体类型。 CFETR CSMC由两个同轴螺线管线圈组成,分别在高场区域中命名为Nb3 Sn线圈,在低场区域中命名为NbTi线圈,以有效地优化制造成本。当工作电流为47.65 kA时,Nb3Sn和NbTi线圈的最大磁场分别达到12 T和6.1T。本文首先概述了CFETR CSMC的基本设计目标和运行要求。其次,详细描述了Nb3Sn超导链和CICC的特性。随后,第三部分介绍了CFETR CSMC的基本结构设计。 Nb3Sn CICC样品的均流温度和耦合损耗测量作为最重要的阶段评估,是在SUTLAN测试设备中进行的,得出了一些有意义的结论。

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