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Coupling losses in flat superconducting cables with considerable edge currents between the strands

机译:在股线之间具有相当大的边缘电流的平超导电缆中的耦合损耗

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We calculate the ratio of the coupling losses and the current transfer factor for two structures compared with the simple Rutherford-type cable: additional conducting layer on the cable edges (A) and inclusion of a central layer with high resistivity (B). We then examine the possibility of designing cable structures with increased stability against electromagnetic perturbations. Whereas in case (A) both the coupling losses and the amount of the transferred current increase, it is just the opposite in case (B). However, for obtaining cable designs with higher stability, it seems to be inevitable to cut the well conducting edge sheath in segments whose lengths do not exceed the cabling or twist pitch. The crucial question for cables with such segmented edge layers in case (A) is then, whether the increased coupling loss density close to the edges is still tolerable from the cooling point of view. It is suggested, that the placing of conducting layer at the cable centre would lead to cables with much higher stability than placing it close to the cable edges.
机译:与简单的Rutherford型电缆:电缆边缘(a)上的附加导电层相比,计算两个结构的耦合损耗和电流转移系数的比率,并将中央层具有高电阻率(b)。然后,我们检查设计电缆结构的可能性,随着电磁扰动的稳定性增加。然而,在(a)耦合损耗和转移电流的增加的情况下,它与情况(b)相反。然而,为了获得具有更高稳定性的电缆设计,似乎是不可避免的,在长度不超过布线或扭转间距的段中切割井导电边缘护套。在情况(a)的情况下,具有这种分段边缘层的电缆的关键问题是,从冷却的角度来看,是否仍然可以容忍靠近边缘的增加的耦合损耗密度。建议,在电缆中心处的导电层的放置将导致具有远高于将其靠近电缆边缘的稳定性的电缆。

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