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Numerical Study of Optimization Design of High Temperature Superconducting Field Winding in 20 MW Synchronous Motor for Ship Propulsion

机译:20 MW船舶同步电动机高温超导绕组优化设计的数值研究。

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This paper presents the optimization study of the field winding structure of the 20 MW-class HTS motor for the electric ship propulsion based on the minimization of the flux flow loss. The examples of the optimized shape of the HTS field pole coils obtained by the numerical analysis are presented. By optimizing the cross section of the field pole coil, it is found that the magnetic field perpendicular to the tape surface in the optimized shape coil significantly decreases compared with that in the rectangular shape base coil. As the results of the reduction of the perpendicular magnetic field, it is shown that the flux flow loss remarkably decreases. It is also pointed that the necessary length of the HTS tape for the optimized shape coil increases.
机译:本文基于最小化磁通流量损失,提出了用于电船推进的20 MW级高温超导电动机励磁绕组结构的优化研究。给出了通过数值分析获得的HTS励磁极线圈的最佳形状的示例。通过优化励磁极线圈的横截面,发现与矩形基础线圈相比,优化形状线圈中垂直于带表面的磁场明显减小。作为垂直磁场的减小的结果,表明通量流动损失显着减小。还指出的是,用于优化形状的线圈的HTS带的必要长度增加。

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