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Current Margin Against the Fault Current in REBCO Coated Conductors

机译:REBCO涂层导体中相对于故障电流的电流裕量

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摘要

The application of yttrium barium copper oxide (YBCO) coated conductors in power cables is anticipated. In practical applications, high-temperature superconducting (HTS) cables can be subjected to short-circuit fault current and are expected to operate for over 30 years. In order to safeguard the current margin of YBCO coated conductors against fault current, we carried out preliminary experiments on overcurrent characteristics using an HTS model cable. Meanwhile, we performed numerical simulations to clarify the electromagnetic and thermal behaviors of the HTS model cable. In this study, we numerically simulated the fault current waveform in each YBCO coated conductor that constitutes an entire cable. We then carried out experiments focusing on the current-voltage $(I-V)$ characteristics and the current margin without causing critical current $(I_{rm c})$ degradation against the fault current by varying the amplitude of the waveform obtained numerically. Furthermore, we repeatedly applied the fault current to a YBCO coated conductor to experimentally investigate the $I_{rm c}$ degradation caused by iterative fault current.
机译:预计钇钡氧化铜(YBCO)涂层导体在电力电缆中的应用。在实际应用中,高温超导(HTS)电缆可能会遭受短路故障电流的影响,并且有望运行30年以上。为了保护YBCO涂层导体的电流裕量不受故障电流的影响,我们使用HTS模型电缆对过电流特性进行了初步实验。同时,我们进行了数值模拟,以弄清HTS模型电缆的电磁和热行为。在这项研究中,我们对构成整个电缆的每个YBCO涂层导体中的故障电流波形进行了数值模拟。然后,我们通过改变数值获得的波形幅度,着眼于电流-电压$(I-V)$特性和电流裕度,而不会导致临界电流$(I_ {rm c})$相对于故障电流的劣化而进行实验。此外,我们将故障电流反复施加到YBCO涂层导体上,以实验研究由迭代故障电流引起的$ I_ {rm c} $退化。

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