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Effect of Core Materials on the Electrical Properties of Superconducting Conductor on Round Core Cable

机译:芯材料对圆芯电缆超导导体电性能的影响

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High temperature superconducting (HTS) conductor on round core (CORC) cable is considered as a potential technology for power applications, because of its high current-carrying capacity, compactness, and strong mechanical properties. As the main component of CORC cable, center core is used to support the HTS conductors. However, for metal center core, eddy current induced in the core under alternating electromagnetic field is unneglectable, which will lead to extra AC loss in power applications. This paper focuses on the selection of center core of CORC cable. AC losses of CORC cable using different core materials are evaluated by both numerical and experimental methods, in which copper, stainless steel, fiberglass epoxy and nickel have been chosen as the core. Results illustrate that AC loss of CORC cable has a correspondingly increase with the conductivity of core material. Significant frequency dependence of AC loss indicates that for single layer CORC cable, proper core material should be chosen to minimize the eddy current loss. Besides, CORC cable with core of nickel shows a quite different AC performance due to its ferromagnetic characteristics. Conclusions obtained from this paper will provide essential data for future optimization on the design of CORC cables.
机译:圆形芯(CORC)电缆上的高温超导(HTS)导体被认为是电力应用的潜在技术,因为其电流承载能力,紧凑性和强大的机械性能。作为CORC电缆的主要组件,中心芯用于支撑HTS导体。然而,对于金属中心核心,在交替电磁场下在芯中引起的涡电流是不可输入的,这将导致电力应用中的额外交流损耗。本文重点介绍了CORC电缆中心核心的选择。使用不同芯材料的CORC电缆的AC损耗通过数值和实验方法进行评估,其中铜,不锈钢,玻璃纤维环氧树脂和镍作为核心。结果说明,随着芯材的电导率,CORC电缆的交流损耗具有相应地增加。 AC损耗的显着频率依赖性表示,对于单层电缆,应选择适当的芯材以最小化涡流损耗。此外,由于铁磁特性,镍芯的CORC电缆显示出相当不同的交流性能。从本文获得的结论将为未来的CORC电缆设计提供必要的数据。

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