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Trapped field characteristic of HTS bulk in AC external magnetic field

机译:HTS块在交流外部磁场中的俘获场特性

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Although immutable trapped field is required in superconducting bulk applications as a quasipermanent magnet, the trapped field is influenced and changed by time-varying external magnetic field in a realistic operational environment of electrical devices. This means that shielding current distribution within bulk is changed by the time-varying magnetic field and the transient magnetic flux movement results in temperature rise and finally reduction of the trapped field. In this paper, we experimentally investigated the transition of trapped field while applying external AC magnetic field with various amplitude and frequency to a disk-shaped YBCO bulk. And we also numerically investigate the relationship between characteristic of trapped-field attenuation and shielding current distribution within the bulk using a newly developed simulation program. This program is based on the finite element method (FEM) considering the voltage-current (E-J) characteristics. It is found that the shielding current distribution is dependent on frequency of AC external field and trapped field attenuation is closely related to the shielding current.
机译:尽管在超导本体应用中需要准永久磁铁提供不变的俘获场,但在实际的电子设备操作环境中,俘获场会受到时变外部磁场的影响和改变。这意味着,随时间变化的磁场会改变整体中的屏蔽电流分布,瞬态磁通量的移动会导致温度升高,最终导致俘获场的减小。在本文中,我们通过实验研究了陷波场的跃迁,同时将具有不同振幅和频率的外部交流磁场施加到圆盘状YBCO块体上。并且,我们还使用新开发的仿真程序,数值研究了陷获场衰减特性与主体内部屏蔽电流分布之间的关系。该程序基于考虑电压-电流(E-J)特性的有限元方法(FEM)。发现屏蔽电流分布取决于交流外部磁场的频率,陷获的场衰减与屏蔽电流密切相关。

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