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Trapped field characteristics of Y-Ba-Cu-O bulk in time-varying external magnetic field

机译:随时间变化的外部磁场中Y-Ba-Cu-O块体的俘获场特性

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摘要

It is very important to clarify characteristics of trapped field in HTS bulk exposed to an external AC magnetic field in application of high-temperature superconducting bulk to motors, magnetic levitation systems, bulk magnets and so on. We have experimentally investigated the transition of trapped field while applying external AC magnetic field to a disk-shaped YBCO bulk. The observed trapped-field attenuation is different from that by flux creep, i.e., zero external field. It may be considered that the trapped-field attenuation is affected by external AC magnetic field, particularly temperature rise due to AC loss. In this paper, electromagnetic behavior within the bulk exposed to external AC magnetic field, especially supercurrent distribution, are investigated numerically using a simulation code based on the finite element method (FEM) considering voltage-current (E-J) characteristic. We focus on the relationship between the transition of supercurrent distribution within the bulk while applying external AC magnetic field and both n-value of E-J characteristic and temperature rise by AC loss.
机译:阐明高温超导块体在电机,磁悬浮系统,块体磁体等中的应用,弄清暴露于外部交流磁场的高温超导块体中的俘获场特性非常重要。我们已经通过实验研究了在将外部交流磁场施加到圆盘形YBCO块体时俘获场的跃迁。观察到的俘获场衰减不同于通量蠕变,即零外场。可以认为,俘获场的衰减受外部交流磁场的影响,特别是由于交流损耗引起的温度升高。在本文中,利用基于电压-电流(E-J)特性的有限元方法(FEM)的模拟代码,对暴露于外部AC磁场的物体内部的电磁行为,特别是超电流分布进行了数值研究。我们关注的是在施加外部交流磁场时,主体内部的超电流分布的转变与E-J特性的n值和交流损耗引起的温度升高之间的关系。

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