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Conceptual Design of Coaxial Multi-Layer Type CIC for SC Magnet of FFHR

机译:FFHR SC磁体同轴多层CIC的概念设计

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An imbalanced current distribution is often observed in cable-in-conduit (CIC) superconductors which are composed of triplet type multi-staged sub-cables, and hence deteriorates the performance of the coils. Since it is very difficult to control homogeneous current distribution in the triplet type CIC, we propose a coaxial multi-layer type CIC to obtain the homogeneous current distribution. We use a circuit model to analyse the current distribution in the coaxial multi-layer CIC. After calculating inductances between adjacent layers in the coaxial multilayer cable, we can derive a generalized formula governing the current distribution as explicit functions of the superconducting cable construction parameters, such as twist pitch, twist direction, layer radius and SC and Cu strands number. We apply the formula to design the coaxial multi-layer CIC for SC magnet of Force Free Helical-type Fusion Reactor (FFHR). We can design the coaxial multi-layer CIC with the homogeneous current distribution, and investigate several SC strand arrangements in the CIC, and optimize the superconducting strand volume.
机译:在由三重态多级子电缆组成的导管内电缆(CIC)超导体中经常观察到不平衡的电流分布,因此会降低线圈的性能。由于在三重态CIC中控制均匀电流分布非常困难,我们提出了一种同轴多层CIC来获得均匀电流分布。我们使用电路模型来分析同轴多层CIC中的电流分布。在计算同轴多层电缆中相邻层之间的电感之后,我们可以得出一个控制电流分布的通用公式,作为超导电缆构造参数(例如扭距,扭绞方向,层半径以及SC和Cu股数)的显式函数。我们应用该公式设计了无力螺旋型聚变反应堆(FFHR)的SC磁体同轴多层CIC。我们可以设计出具有均匀电流分布的同轴多层CIC,并研究CIC中的多个SC股线排列,并优化超导股线的体积。

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