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Analysis of current distributions in a multi-laminated HTS tape conductor for solenoid coils

机译:用于电磁线圈的多层HTS带状导体中的电流分布分析

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A multi-laminated HTS tape conductor has been recently developed for large coils. If the HTS tapes are simply laminated to form the conductor, the current distribution in the laminated tape conductor of the coil is imbalanced because of the differences among inductances of tapes. Transposition of the tapes in the conductor is effective for homogeneous current distribution, but the tape may be damaged due to the lateral bending. The solenoid coil has enough space to transpose the tapes at both ends. However, a proposed theory so far requires a restriction in the number of coil layers for homogeneous current distribution in the laminated tape conductor. It is very important to analyze current distributions in the multi-laminated tape conductor for the solenoid coil with arbitrary layers. In this paper, we apply the Maxwell integral equation to the region contoured by adjacent laminated tapes to analyze the current distributions of the tapes in an infinite solenoid coil, and demonstrate that the flux across the region is conserved as long as the tapes are not saturated, and finally induce the fundamental equations as functions of coil construction parameters, such as layer radii, laminated tape spaces, and winding pitches. We use the fundamental equations for 2-layer and 4-layer coils to verify the homogeneous current distribution of the laminated tape conductor for an arbitrary layer number. Since the flux between the tapes in the inner layer of a 2-layer coil is contributed from the outer layers, the tape space in the outer layer must be larger than that in the inner layer because of the balance between the two fluxes. Moreover, we have developed an analysis method for a finite solenoid coil.
机译:最近已经开发出用于大型线圈的多层HTS带状导体。如果简单地将HTS带层叠以形成导体,则由于带的电感之间的差异,线圈的层叠带导体中的电流分布不平衡。带在导体中的移位对于均匀的电流分布是有效的,但是带可能由于侧向弯曲而损坏。螺线管线圈具有足够的空间,可以在两端放置磁带。然而,迄今为止,提出的理论要求限制线圈层的数量,以在层压带状导体中均匀地分配电流。分析具有任意层的螺线管线圈的多层带状导体中的电流分布非常重要。在本文中,我们将Maxwell积分方程应用于相邻层压带轮廓的区域,以分析无限螺线管线圈中带的电流分布,并证明只要带不饱和,整个区域的磁通量就保持不变。 ,最后根据线圈构造参数(如层半径,层压带间距和绕组间距)推导基本方程式。我们使用2层和4层线圈的基本方程来验证任意层数下层压带状导体的均匀电流分布。由于两层线圈的内层中的带之间的磁通量是由外层贡献的,因此,由于两种通量之间的平衡,外层中的带空间必须大于内层中的带空间。此外,我们已经开发了一种有限电磁线圈的分析方法。

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