Numerical simulation on AC loss in REBCO tapes carrying non-sinusoidal currents

IF 5.6 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Katsuya Uejima , Yueming Sun , Daisuke Miyagi , Jakub Glowacki , Nicholas J. Long , Zhenan Jiang
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引用次数: 0

Abstract

AC loss is one of the greatest obstacles for high-temperature superconducting (HTS) applications. In some HTS applications, coated conductors carry non-sinusoidal currents. Thus, it is important to investigate the effect of various waveforms on AC loss in coated conductors. In this work, transport AC loss in a 4 mm - wide REBCO coated conductor carrying sinusoidal and non-sinusoidal currents, is numerically investigated. The current amplitudes, the frequency of the transport current, and n-value are varied. Non-sinusoidal transport current waveforms studied include square, five types of trapezoidal, and triangular waveforms. Simulated results show that, for a given current amplitude, AC loss for the square current waveform is the greatest, that for the triangular waveform is the smallest. The sequence of AC loss in the conductor for different current waveforms coincides with the penetration depth, which implies the penetration depth determines the AC loss of the coated conductor. Furthermore, the transport AC loss in the conductor was found to decrease with frequency as f-2/n for non-sinusoidal transport current.

非正弦电流REBCO带交流损耗的数值模拟
交流损耗是高温超导应用的最大障碍之一。在一些高温超导应用中,涂层导体承载非正弦电流。因此,研究不同波形对涂层导体中交流损耗的影响是很重要的。在这项工作中,数值研究了在4mm宽的REBCO涂层导体中传输正弦和非正弦电流的交流损耗。电流幅度、传输电流的频率和n值是变化的。研究的非正弦传输电流波形包括方形、五种类型的梯形和三角形波形。模拟结果表明,对于给定的电流幅值,方形电流波形的交流损耗最大,三角形波形的交流损失最小。不同电流波形下导体中交流损耗的顺序与穿透深度一致,这意味着穿透深度决定了涂层导体的交流损耗。此外,发现对于非正弦传输电流,导体中的传输AC损耗随着频率f-2/n而减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.90
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