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Reduction of radial magnetic fields in HTS solenoids with different constraint conditions

机译:在不同约束条件下降低HTS螺线管中的径向磁场

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摘要

The critical current of HTS solenoid is heavily dependent on the value of radial magnetic fields in the coil winding section: the higher radial magnetic field in the winding section, the lower critical current of HTS solenoid is. So, we need to reduce the radial magnetic field components of the solenoid as much as possible to get high performance HTS magnet. In this paper we investigate various HTS coil shapes, obtained from the optimum algorithm, in which the radial magnetic field components are minimized. three different constraints were used during optimization calculation: (1) fixed magnet volume condition, (2) fixed center magnetic field condition, and (3) maximum magnetic energy storage condition. The calculated results using those three different constraints showed almost similar shapes to one another and turned out to be effective to reduce the radial magnetic fields in the winding section. Finally, it is pointed out that two or three sectioned multi-magnet shape, which can be deduced from the calculated shape, could be more optimal to reduce the radial magnetic field in the coil, and more practical to fabricate.
机译:HTS螺线管的临界电流在很大程度上取决于线圈绕组部分中的径向磁场的值:绕组部段中的径向磁场越高,HTS螺线管的临界电流越小。因此,我们需要尽可能减少螺线管的径向磁场分量,以获得高性能的HTS磁体。在本文中,我们研究了从最佳算法获得的各种高温超导线圈形状,其中径向磁场分量最小。在优化计算中使用了三个不同的约束条件:(1)固定的磁体体积条件,(2)固定的中心磁场条件和(3)最大磁能存储条件。使用这三个不同约束条件的计算结果显示出彼此几乎相似的形状,并被证明可有效减少绕组部分的径向磁场。最后,要指出的是,可以从计算出的形状中推断出两到三段的多磁体形状,对于减小线圈中的径向磁场而言可能更理想,并且可以更实际地制造。

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