Study on the electro-magneto-mechanical characteristics of CORC superconducting cable with striations

IF 1.3 3区 物理与天体物理 Q4 PHYSICS, APPLIED
Rongli Jia , Wenhai Zhou , Rui Liang , Bin Wang , Jiafeng Cao , Shijie Shi
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Abstract

CORC superconducting cable is a compact and flexible composite superconductor. It is widely used in large power systems because of its good flexibility and high engineering current density. In these applications, reducing the AC loss generated by the superconductor is a key factor in studying the electromagnetic field of the superconducting conductor, which affects the operational stability of the entire superconducting power device. Currently, the use of striated tape-wound cables not only allows for flexible wiring at design time but also effectively reduces AC losses. This technology has been widely used in large superconducting magnet equipment. In this paper, the finite element model of single superconducting tape and CORC superconducting cable is established based on the finite element idea. The electromagnetic properties and mechanical changes are numerically calculated by H-method. The results show that both the current density and the magnetic field of a single superconducting tape show a gradual penetration from the two sides to the center. The area of maximum current density and magnetic field distribution is at the tape boundary. The distribution of current density, magnetic field and Lorentz force of three-dimensional CORC superconducting cable is similar. All of them are gradually attenuated from the maximum value at the boundary to the center position. It is worth noting that the current density, magnetic field and Lorentz force of the striated superconducting cables are smaller than the values without striations. The calculation results of the finite element model in this paper show that the striations weaken the current density, magnetic field and Lorentz force of the CORC superconducting cable by about 8.77%, 16.21% and 9.23%. Moreover, the presence of striations can effectively reduce the AC loss of superconductors.

带条纹 CORC 超导电缆的电磁机械特性研究
CORC 超导电缆是一种紧凑灵活的复合超导体。由于具有良好的柔韧性和较高的工程电流密度,它被广泛应用于大型电力系统。在这些应用中,降低超导体产生的交流损耗是研究超导导体电磁场的关键因素,而电磁场又影响着整个超导电力设备的运行稳定性。目前,使用条纹绕带电缆不仅可以在设计时灵活布线,还能有效降低交流损耗。这种技术已广泛应用于大型超导磁体设备中。本文基于有限元思想,建立了单超导带和 CORC 超导电缆的有限元模型。采用 H 方法对其电磁特性和力学变化进行了数值计算。结果表明,单条超导带的电流密度和磁场都呈现出从两侧向中心逐渐渗透的趋势。最大电流密度和磁场分布区域位于磁带边界。三维 CORC 超导电缆的电流密度、磁场和洛伦兹力分布与此类似。它们都从边界的最大值向中心位置逐渐衰减。值得注意的是,有条纹超导电缆的电流密度、磁场和洛伦兹力都小于无条纹的值。本文有限元模型的计算结果表明,条纹削弱了 CORC 超导电缆的电流密度、磁场和洛伦兹力,减幅分别约为 8.77%、16.21% 和 9.23%。此外,条纹的存在还能有效降低超导体的交流损耗。
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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来源期刊
CiteScore
2.70
自引率
11.80%
发文量
102
审稿时长
66 days
期刊介绍: Physica C (Superconductivity and its Applications) publishes peer-reviewed papers on novel developments in the field of superconductivity. Topics include discovery of new superconducting materials and elucidation of their mechanisms, physics of vortex matter, enhancement of critical properties of superconductors, identification of novel properties and processing methods that improve their performance and promote new routes to applications of superconductivity. The main goal of the journal is to publish: 1. Papers that substantially increase the understanding of the fundamental aspects and mechanisms of superconductivity and vortex matter through theoretical and experimental methods. 2. Papers that report on novel physical properties and processing of materials that substantially enhance their critical performance. 3. Papers that promote new or improved routes to applications of superconductivity and/or superconducting materials, and proof-of-concept novel proto-type superconducting devices. The editors of the journal will select papers that are well written and based on thorough research that provide truly novel insights.
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