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ac losses in superconducting magnets at low excitation levels

机译:低激励水平下超导磁体的交流损耗

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摘要

Levitation of high‐speed transportation vehicles carrying superconducting magnets may be achieved by repulsion from the currents induced in a conducting guideway. The vertical accelerations of such vehicles moving over a guideway of finite roughness will lead to alternating currents in the superconducting magnets and thus to power dissipation in the cryogenic system. Previous investigators have concluded that the resulting contribution to the cryogenic heat load may be as great as that from all other sources and thus impose serious weight and space penalties on the over‐all system design. These investigators have quite generally assumed that the alternating fields will completely penetrate the superconducting wire at all field levels and that the use of twisted multifilament composite wire is thus essential if ac losses are to be minimized. We show that this assumption is incorrect and that it results in a significant overestimate of the loss in multicore wire at the low alternating field levels appropriate for the full‐scale vehicle‐guideway system. Our analysis further predicts, and our experiments confirm, that an order‐of‐magnitude improvement inlow‐levelac loss performance can be achieved merely by the substitution of single‐core superconducting wire for the multicore wire ususally proposed. This should reduce the ac loss to about 1.3 W/vehicle from the 14 W for a typical multicore wire. We find a cubic dependence of the loss rate on the alternating field level, and this implies that an additional loss reduction would accrue if the coil bundle could be expanded to reduce the average current density while preserving the total current and lift force. By these means the ac loss contribution to the cryogenic heat load of a levitated vehicle could be made quite negligible.
机译:携带超导磁体的高速运输车辆的悬浮可以通过导轨中感应的电流的排斥来实现。这种飞行器在有限粗糙度的导轨上移动的垂直加速度将导致超导磁体中的交流电,从而导致低温系统中的功率耗散。先前的研究人员已经得出结论,由此产生的对低温热负荷的贡献可能与所有其他来源的贡献一样大,因此对整个系统设计施加了严重的重量和空间损失。这些研究人员通常认为,交变磁场将在所有磁场水平上完全穿透超导线,因此,如果要最大限度地减少交流损耗,使用双绞复丝复合线是必不可少的。我们表明,这种假设是不正确的,它导致在适用于全连字符比例车辆和连字符导轨系统的低交变场能级下,多芯线的损耗被严重高估。我们的分析进一步预测,我们的实验证实,仅仅通过用单芯超导线代替通常提出的多芯超导线,就可以实现低连字符损耗性能的阶数级改进。这应该将交流损耗从典型多芯线的 14 W 降低到约 1.3 W/车辆。我们发现损耗率与交变磁场水平存在立方依赖性,这意味着如果可以扩展线圈束以降低平均电流密度,同时保持总电流和升力,则会产生额外的损耗减少。通过这些方法,交流损耗对悬浮车辆的低温热负荷的贡献可以忽略不计。

著录项

  • 来源
    《journal of applied physics》 |1974年第2期|907-913|共页
  • 作者

    T. K. Hunt;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
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