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Frequency-dependent critical current and transport ac loss of superconductor strip and Roebel cable

机译:超导体带和Roebel电缆的频率相关临界电流和传输交流损耗

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摘要

The frequency-dependent critical current of a superconductor strip and Roebel cable has been studied using a 2D finite element simulation. It is shown that the critical current of the superconductor increases with frequency as f1, where n is the exponent of the power law flux creep model. Transport ac loss in a superconductor strip decreases with frequency as f - 2 when the amplitude of the applied ac current is far less than its critical current. However, when the applied current is large and becomes comparable to the critical current, the transport ac loss decreases with frequency as 1/f. The analytical results are substantiated with available experimental data and the results of a 2D finite element simulation.
机译:使用二维有限元模拟研究了超导体带和Roebel电缆的频率相关的临界电流。结果表明,超导体的临界电流随着频率的增加而随着f1 / n的增加而增加,其中n是幂律通量蠕变模型的指数。当施加的交流电流的幅度远小于其临界电流时,超导体带中的传输交流损耗会随着频率以f-2 / n减小。但是,当施加的电流很大并且变得与临界电流相当时,传输ac损耗会随着频率的1 / f降低。分析结果由可用的实验数据和2D有限元模拟的结果证实。

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