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A theoretical investigation on current imbalance in flat two-layer superconducting cables

机译:扁平两层超导电缆中电流不平衡的理论研究

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摘要

A model for the simulation of current distribution in superconducting Rutherford cables is described. The model assumes that interstrand currents can flow continuously among the strands, as if the contact resistances were smeared along the cable length. The model is aimed at the simulation of the generation and development of long-range current loops in the presence of time-dependent magnetic fields. The results of the model are compared with those obtained through the lumped constant circuit model currently used to calculate the current distribution in Rutherford cables obtaining a good quantitative agreement. The model has also been applied to the study of current distribution in the Rutherford cable of a short LHC dipole magnet. The calculated values of current differences among the strands are in qualitative agreement with the experimental data on the amplitude of periodic oscillations of the magnetic field in the magnet bore.
机译:描述了一种用于仿真超导卢瑟福电缆中电流分布的模型。该模型假定,股间电流可以在股线之间连续流动,就像接触电阻沿电缆长度涂抹一样。该模型旨在模拟存在时变磁场的情况下远程电流环路的产生和发展。将模型的结果与通过集总常数电路模型获得的结果进行比较,该模型目前用于计算卢瑟福电缆中的电流分布,从而获得了良好的定量一致性。该模型也已用于研究短LHC偶极磁体的卢瑟福电缆中的电流分布。股线之间的电流差的计算值与关于磁体孔中磁场的周期性振荡幅度的实验数据在质量上一致。

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