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首页> 外文期刊>Physica, C. Superconductivity and its applications >Current distribution and voltage-current relation in multi-layered LTS and HTS power cable core: a review
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Current distribution and voltage-current relation in multi-layered LTS and HTS power cable core: a review

机译:多层LTS和HTS电力电缆芯中的电流分布和电压-电流关系:综述

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摘要

To achieve the necessary current carrying capacity superconducting power cables core should be combined from several current-carrying layers. The key problem of multi-layered cable design is the achievement of uniform current distribution among the layers. This problem is directly connected with voltage-current characteristics of tapes from which a cable is made. The solution is different for LTS and HTS power cables. The influences of the layers winding geometry on current distribution and core voltage-current relation are considered in this paper. The history of the problem is reviewed for LTS wires and power cables and HTS power cables. It is shown that for power cables core it is possible to achieve uniform current distribution among layers in a cable with 2-10 layers, depend on core diameter. The influence of non-uniform current distribution on index (n-factor) of voltage-current characteristics of a core is analyzed. It is also shown that the length of the test-sample has sufficient influence on current distribution, voltage-current characteristics and other measurable parameters of a cable model. (C) 2003 Elsevier B.V. All rights reserved. [References: 48]
机译:为了达到必要的载流能力,超导电力电缆的芯线应由多个载流层组合而成。多层电缆设计的关键问题是各层之间电流分布的均匀性。该问题与制造电缆的带的电压-电流特性直接相关。 LTS和HTS电力电缆的解决方案不同。本文考虑了绕组层的几何形状对电流分布和铁芯电压-电流关系的影响。对LTS电线和电源电缆以及HTS电源电缆的问题历史进行了回顾。结果表明,对于电力电缆芯线,取决于芯线直径,可以在2-10层电缆中的各层之间实现均匀的电流分布。分析了电流不均匀分布对铁芯电压-电流特性指标(n因子)的影响。还显示出测试样本的长度对电缆模型的电流分布,电压-电流特性和其他可测量参数具有足够的影响。 (C)2003 Elsevier B.V.保留所有权利。 [参考:48]

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