考虑到各向异性特征的 REBCO 胶带涡流振动研究。

IF 3.7 1区 物理与天体物理 Q2 PHYSICS, APPLIED
Superconductor Science & Technology Pub Date : 2017-01-01 Epub Date: 2017-08-11 DOI:10.1088/1361-6668/aa7f69
Fgei Liang, Timing Qu, Zhenyu Zhang, Jie Sheng, Weijia Yuan, Yukikazu Iwasa, Min Zhang
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引用次数: 0

摘要

第二代高温超导体,特别是 REBCO,已成为开发新一代高磁场(大于 25 T)磁体的新研究重点。磁体应用的主要挑战之一是电流筛选问题。以往的研究表明,对于磁化超导叠层和叠块,施加与环流在同一平面内的交流磁场会导致涡流振动而退磁,这为消除屏蔽电流提供了可能的解决方案。本文通过实验和数值方法进行了深入研究,以揭示 REBCO 叠层的涡动机理。本文进行了一项新的实验,以测量暴露在平面交流磁场中的 REBCO 叠层的退磁率。同时,建立了基于 E-J 功率定律的二维有限元模型,用于模拟交流磁场的涡旋振动效应。实验结果和模拟结果取得了定性一致。我们的结果表明,施加的面内磁场会导致捕获磁场在前半个振动周期内突然衰减,这是由临界电流的磁场依赖性引起的。此外,退磁率随磁带数增加而下降的主要原因是,在振荡过程中,交叉磁场被顶部和底部磁层屏蔽,从而导致内层退磁率降低。我们还证明,外加交流磁场的频率对退磁过程的影响很小。我们的建模工具和研究结果完善了涡流振动理论,为消除新一代 REBCO 磁体中的屏蔽电流提供了有益的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Vortex shaking study of REBCO tape with consideration of anisotropic characteristics.

Vortex shaking study of REBCO tape with consideration of anisotropic characteristics.

Vortex shaking study of REBCO tape with consideration of anisotropic characteristics.

The second generation high temperature superconductor, specifically REBCO, has become a new research focus in the development of a new generation of high-field (>25 T) magnets. One of the main challenges in the application of the magnets is the current screening problem. Previous research shows that for magnetized superconducting stacks and bulks the application of an AC field in plane with the circulating current will lead to demagnetization due to vortex shaking, which provides a possible solution to remove the shielding current. This paper provides an in-depth study, both experimentally and numerically, to unveil the vortex shaking mechanism of REBCO stacks. A new experiment was carried out to measure the demagnetization rate of REBCO stacks exposed to an in-plane AC magnetic field. Meanwhile, 2D finite element models, based on the E-J power law, are developed for simulating the vortex shaking effect of the AC magnetic field. Qualitative agreement was obtained between the experimental and the simulation results. Our results show that the applied in-plane magnetic field leads to a sudden decay of trapped magnetic field in the first half shaking cycle, which is caused by the magnetic field dependence of critical current. Furthermore, the decline of demagnetization rate with the increase of tape number is mainly due to the cross-magnetic field being screened by the top and bottom stacks during the shaking process, which leads to lower demagnetization rate of inner layers. We also demonstrate that the frequency of the applied AC magnetic field has little impact on the demagnetization process. Our modeling tool and findings perfect the vortex shaking theory and provide helpful guidance for eliminating screening current in the new generation REBCO magnets.

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来源期刊
Superconductor Science & Technology
Superconductor Science & Technology 物理-物理:凝聚态物理
CiteScore
6.80
自引率
27.80%
发文量
227
审稿时长
3 months
期刊介绍: Superconductor Science and Technology is a multidisciplinary journal for papers on all aspects of superconductivity. The coverage includes theories of superconductivity, the basic physics of superconductors, the relation of microstructure and growth to superconducting properties, the theory of novel devices, and the fabrication and properties of thin films and devices. It also encompasses the manufacture and properties of conductors, and their application in the construction of magnets and heavy current machines, together with enabling technology.
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