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Analysis of magnetic field and geometry effects for the design of HTS devices for AC power applications

机译:分析用于交流电源应用的HTS设备的磁场和几何效应

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The performance of HTS devices is strongly influenced by local values of the current and field distributions. In this paper, we investigate the influence of the magnetic field and the geometrical configuration on the loss behavior of a 200 kVA FCL prototype, composed by Bi-2223/Ag tapes wound around a cylindrical support. The investigation is performed by means of finite element computations, with the use of an axisymmetric 2D A-V formulation for taking into account the cylindrical geometry. The electrical behavior of the superconductor is described by means of a B-dependent E-J power-law relation, derived from experimental measurements with a field of different orientation. Several geometrical configurations are analyzed and compared, in order to find the ones with the lowest AC loss.
机译:HTS设备的性能在很大程度上受电流和场分布的局部值影响。在本文中,我们研究了磁场和几何构型对200 kVA FCL原型的损耗行为的影响,该原型由Bi-2223 / Ag胶带绕圆柱形支撑物缠绕而成。该研究是通过有限元计算进行的,并使用轴对称2D A-V公式来考虑圆柱几何形状。超导体的电性能是通过B依赖的E-J功率定律关系来描述的,该关系是从具有不同方向的磁场的实验测量中得出的。分析和比较了几种几何构型,以便找到具有最低AC损耗的构型。

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