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Influence of current distribution on conductor performance in coaxial multi-layer HTS conductor

机译:电流分布对同轴多层HTS导体中导体性能的影响

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We have developed a simulation method based on magnetic flux conservation between two filaments of adjacent layers to estimate current distribution in coaxial multi-layer HTS conductor. Using this method, we have demonstrated homogeneous current distribution and verified that current distribution was controllable directly by the conductor parameters of layer radius, twisting pitch and twisting direction. Although it has been considered that homogeneous current distribution is effective for reducing AC loss, the most suitable conductor parameters and operating condition have not been investigated sufficiently yet. Therefore, we improved our developing method to estimate current distribution more rigorously considering the nonlinear voltage-current characteristic of HTS tape. To verify the validity of the simulation method, we measured current distribution using coaxial two-layer conductors. Agreement of current distribution between the experiment and the analysis was good.
机译:我们已经开发了一种基于相邻层的两根灯丝之间的磁通守恒性的仿真方法,以估计同轴多层HTS导体中的电流分布。使用这种方法,我们已经证明了均匀的电流分布,并验证了电流分布可以直接由导体的层半径,扭曲间距和扭曲方向来控制。尽管已经认为均匀的电流分布对于减少AC损耗是有效的,但是尚未对最合适的导体参数和工作条件进行充分的研究。因此,考虑到HTS胶带的非线性电压-电流特性,我们改进了开发方法以更严格地估算电流分布。为了验证仿真方法的有效性,我们使用同轴两层导体测量了电流分布。实验与分析之间的电流分布一致。

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