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Performance Improvement of YBCO Coil for High-Field HTS-SMES Based on Homogenized Distribution of Magnetically-Mechanically Influenced Critical Current

机译:基于磁致临界电流均质化分布的高场HTS-SMES YBCO线圈性能改进

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摘要

Generally speaking for a HTS coil, perpendicular magnetic field to conductor's broad surface should be suppressed as small as possible in relation to the magnetic anisotropy. This is a reason why toroidal coil with relatively many elementary coils is expected for HTS-SMES. On the other hand, from the point of view of the homogenization of critical current distribution in the coil, perpendicular field and parallel field should be balanced corresponding to the ratio of the magnetic anisotropy. This means that a certain level of the perpendicular field is effective to reduce local heat generation in the coil. Furthermore, this concept is especially reasonable for a high-field coil with usual winding method (flat-wise winding) because the perpendicular field does not induce hoop stress which decreases the critical current. In this paper, we show these findings through an optimal design of a MOCVD-YBCO toroidal coil for 2 GJ class SMES taking account of magnetically and mechanically influenced J - E characteristics.
机译:一般来说,对于HTS线圈,相对于磁各向异性,应将与导体宽表面垂直的磁场抑制得尽可能小。这就是为什么对HTS-SMES期望具有相对较多的基本线圈的环形线圈的原因。另一方面,从线圈中的临界电流分布的均质化的观点出发,应该对应于磁各向异性的比率来平衡垂直场和平行场。这意味着一定水平的垂直场可有效减少线圈中的局部热量产生。此外,该概念对于采用常规绕组方法(水平绕组)的高磁场线圈特别合理,因为垂直磁场不会产生会降低临界电流的环向应力。在本文中,我们通过针对2 GJ级SMES的MOCVD-YBCO环形线圈的优化设计,并考虑了磁和机械影响的J-E特性,展示了这些发现。

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