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A macroscopic model for coupling current losses in cables made of multistages of superconducting strands and its experimental validation

机译:多级超导绞线制成的电缆中耦合电流损耗的宏观模型及其实验验证

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摘要

In a multistage cable the superconducting strands occupy the whole volume in a complex oscillatory pat-tern from the axis to the periphery. After considerations on the trajectories of the strands, it is shown that the cable can be organized in a multizone structure with time constants determined from the basic time constants of the various cabling stages. The effective volume fractions of the cable in which losses can be evaluated are also derived. The model is assessed by a fit of an experimental curve. In the case under con-sideration, the screening effects are relatively limited. Altogether, the cable is well characterized by very few parameters: a series of in sequence time constants associated to small fractions of volume. The model is then used to evaluate losses in various conditions of field variations.
机译:在多级电缆中,超导股线从轴到外围占据整个振荡模式的整个体积。在考虑了股线的轨迹之后,显示出电缆可以以多区域结构进行组织,其时间常数由各个布线阶段的基本时间常数确定。还得出了可以评估损耗的电缆有效体积分数。通过实验曲线的拟合评估模型。在考虑的情况下,筛选效果相对有限。总的来说,电缆的特征在于很少的参数:与少量体积相关的一系列顺序时间常数。然后使用该模型评估各种场变化条件下的损耗。

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