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Homogeneous current distribution in a coaxial superconductor withand without return current path

机译:具有和不具有返回电流路径的同轴超导体中的均匀电流分布

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The authors have developed a theoretical method based on magnetic flux conservation between adjacent layers. One of the advantages of this method is that one can directly obtain twisting pitch and radius for realizing homogeneous current distribution in coaxial multi-layer superconductor. A set of the obtained twisting pitch and radius was employed in a sample three-layer conductor comprised of silver-sheathed multi-filamentary BSCCO-2223 tapes and the current distribution was measured by a Rogowski coil. Agreement between the experiment and the theory on current distribution is quite remarkable. Using this theory, the authors analytically investigated the influence of the manufacturing error of twisting pitch and radius on current distribution. The results revealed that the manufacturing errors of twisting pitch and radius have large effect on current distribution and a suitable set of twisting pitch and radius against manufacturing error can be found. They also investigated the relationship between twisting pitch and current distribution in coaxial six-layer conductor with return current path. The characteristics of twisting pitch in the conductor with return current path are different from those of the conductor without return current path
机译:作者已经开发出一种基于相邻层之间磁通守恒的理论方法。该方法的优点之一是可以直接获得扭曲的螺距和半径,以实现同轴多层超导体中的均匀电流分布。将一组获得的扭曲螺距和半径用于由三层银护套BSCCO-2223带组成的样品三层导体中,并通过Rogowski线圈测量电流分布。实验与电流分布理论之间的一致性非常显着。利用这一理论,作者分析了绞距和半径的制造误差对电流分布的影响。结果表明,扭转螺距和半径的制造误差对电流分布有很大的影响,并且可以找到一组合适的扭转螺距和半径来抵抗制造误差。他们还研究了带有返回电流路径的同轴六层导体中扭距和电流分布之间的关系。具有返回电流路径的导体的扭绞节距特性与没有返回电流路径的导体的扭距特性不同

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