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Effective thermal conductivity in HTS coils

机译:HTS线圈中的有效热导率

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摘要

We present a numerical model to determine the effective thermal conductivity in high-T_c superconducting (HTS) coils. The model, based on the heat conduction equation solved with the finite element method, will help us to compute the temperature dependence of the effective thermal conductivity in coils with varying proportions of epoxy in the total winding volume. The conductor parameters in the coils correspond to those in a real Bi-2223/Ag multifilamentary composite tape, where the anisotropy of the Hi-2223 material has been taken into account. We will furthermore discuss about the effects of geometry of the composite structure on effective thermal conductivity. Our result shows that in epoxy impregnated HTS coils at temperatures below 60 K, the effective thermal conductivity is over two orders of magnitude higher in the parallel direction with the conductor axis compared to the perpendicular direction.
机译:我们提出了一个数值模型来确定高T_c超导(HTS)线圈中的有效导热系数。该模型基于用有限元方法求解的热传导方程,将有助于我们计算在总绕组量中环氧树脂比例不同的情况下,线圈中有效热导率的温度依赖性。线圈中的导体参数与真实的Bi-2223 / Ag复丝复合带中的导体参数相对应,其中已考虑到Hi-2223材料的各向异性。我们将进一步讨论复合结构的几何形状对有效导热率的影响。我们的结果表明,在温度低于60 K的环氧树脂浸渍的HTS线圈中,与导体轴平行的方向与垂直方向相比,有效热导率高出两个数量级。

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