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Development of kA-class gas-cooled HTS current lead for superconducting fault current limiter

机译:用于超导故障限流器的kA级气冷HTS电流引线的开发

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摘要

A current lead with kA capacity and small AC loss is being developed for use in superconducting current limiting devices cooled with liquid helium. A gas-cooled type current lead using Bi-based oxide superconducting bulk materials was examined to clarify the effects of the current lead geometry and the use of multiple current leads. This paper presents the results of experiments and numerical simulations based on the finite element method taking consideration of nonuniform transport current distribution among multiple current leads connected in parallel. The simulations are performed to investigate the relationship between the geometry of current leads and the amount of heat flow into a cryostat. In the simulations, the AC loss caused by both mutual and self-induced magnetic fields of multiple current leads is taken into account. The influence of AC loss, the joule heat generated by the contact resistance at joints of NbTi/CuNi multi-strand cables and the HTS bars, and the return passage for gas on the operating characteristics of the HTS current leads are evaluated.
机译:具有kA容量和较小AC损耗的电流引线正在开发中,用于用液态氦冷却的超导限流装置。对使用Bi基氧化物超导块状材料的气冷型电流引线进行了检查,以阐明电流引线几何形状和使用多个电流引线的影响。本文介绍了基于有限元方法的实验和数值模拟结果,其中考虑了并联的多条电流引线之间的传输电流分布不均匀。进行仿真是为了研究电流引线的几何形状与流入低温恒温器的热量之间的关系。在仿真中,考虑了由多条电流引线的互感磁场和自感磁场引起的交流损耗。评估了交流损耗,NbTi / CuNi多股电缆与高温超导棒的接头处的接触电阻所产生的焦耳热以及气体回流通道对高温超导电流引线的工作特性的影响。

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