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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >The Effective Current and Magnetic Field Distributions for Reducing AC Losses in Coaxial Multi-Layer HTS Transmission Cable
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The Effective Current and Magnetic Field Distributions for Reducing AC Losses in Coaxial Multi-Layer HTS Transmission Cable

机译:减少多层多层高温超导传输电缆交流损耗的有效电流和磁场分布

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摘要

We have investigated the relationship between current distribution and transport AC losses in coaxial multi-layer HTS transmission cables and clarified that the same layer current in conducting layers can reduce the transport AC losses effectively. It can be, however, considered that magnetization losses are much larger than the transport AC losses in a large transport current. Therefore, we analytically investigated effective current and magnetic field distributions for reducing total AC losses in an HTS transmission cable with a large transport current. The total AC losses in the case of the same applied magnetic field in the conducting layers were much smaller than those of the same layer current in the conducting layers. This result means that inhomogeneous current distribution is more effective for reducing the total AC losses than homogeneous current distribution. The total AC losses decreased with the electrical insulation thickness between the conducting and shielding layers; the electrical insulation thickness is one of the important parameters in terms of reducing the total AC losses.
机译:我们研究了同轴多层HTS传输电缆中电流分布与传输AC损耗之间的关系,并阐明了导电层中的相同层电流可以有效降低传输AC损耗。但是,可以认为在大的传输电流中,磁化损耗远大于传输AC损耗。因此,我们分析研究了有效的电流和磁场分布,以减少具有大传输电流的HTS传输电缆中的总AC损耗。在导电层中施加相同磁场的情况下,总的交流损耗要比导电层中相同层电流的总交流损耗小得多。该结果意味着,不均匀电流分布比均匀电流分布更有效地减少了总的交流损耗。交流总损耗随导电层和屏蔽层之间的电绝缘厚度的增加而降低;就减少总交流损耗而言,电绝缘厚度是重要的参数之一。

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