导电体
材料科学
各向异性
临界电流
电流(流体)
超导电性
磁场
工程物理
计算机科学
光电子学
凝聚态物理
电气工程
复合材料
物理
光学
工程类
量子力学
作者
Yu Chen,Lin Fu,Junqi Xu,Wenbin Wang,Yougang Sun,Guobin Lin,Xiaohong Chen,Mingshun Zhang,Shan Jiang,Jie Sheng,Yawei Wang,Chen Wei,Boyang Shen
标识
DOI:10.1109/tasc.2024.3391760
摘要
Due to the anisotropy of high-temperature superconducting (HTS) materials, the stacked HTS conductors in a magnetic field are significantly affected, leading to a substantial reduction of critical current. In order to improve the performance of stacked conductors, we optimized the gap between these stacked tapes. First, we conducted experimental tests with four stacked tapes, and the results indicated that the critical current increased by about 5%. In order to explore the effect of the gap optimization scheme on the current distribution, we set up a model with 10 stacked conductors. Through modeling, it was found that the optimized gap scheme could improve the current distribution and increase the overall current carrying capability. This study provides a feasible optimization scheme for the design of high-current stacked HTS conductors, which can potentially enhance their performance in practical engineering.
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