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Experimental study on the characteristics of current distribution in Rutherford cables and parallel strands

机译:Rutherford电缆和平行绞合线中电流分布特性的实验研究

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The current distribution in a multi-stranded superconducting cable such as Rutherford cable plays an important role in the stability. Rutherford cables consist of many strands which are twisted and electrically contacted together. Because of this complexity, it is hard to know factors that effect to the current distribution and hence to the stability. The most important factors may be interstrand contact resistances and mutual inductances between strands mainly caused by twisting strands. To evaluate the effect of contacting and twisting, we compared the characteristics of Rutherford cables with parallel strands. We have performed experimental studies on these items for parallel strands with and without insulation by heating with a spot heater. The results for insulated parallel strands show very similar behaviors to those obtained in Rutherford cables. From the fact, we came to the conclusion that the contact resistances at the edges are relatively low in comparison with side-by-side ones between two adjacent strands in the Rutherford cable, and then that the current commutation occurs mainly at the edges. Rest of the transport current could not change the steady state current distribution. To clarify this is remained as a future research.
机译:多股超导电缆(例如卢瑟福电缆)中的电流分布在稳定性方面起着重要作用。卢瑟福电缆由多股绞合在一起并电气接触在一起的绞合线组成。由于这种复杂性,很难知道影响电流分布并进而影响稳定性的因素。最重要的因素可能是绞线之间的绞线间接触电阻和互感,这主要是由绞线绞合引起的。为了评估接触和扭曲的影响,我们比较了具有平行股线的卢瑟福电缆的特性。我们已经对这些项目进行了实验研究,以通过用点加热器加热来对具有或不具有绝缘层的平行绞合线进行测试。绝缘平行绞合线的结果显示出与在卢瑟福电缆中获得的行为非常相似的行为。根据这一事实,我们得出的结论是,与卢瑟福电缆中两个相邻股线之间的并排电阻相比,边缘处的接触电阻相对较低,然后电流换向主要发生在边缘处。其余的传输电流不能改变稳态电流分布。为了澄清这一点,仍然有待进一步研究。

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