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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >AC Loss Prediction in BSCCO-Tape Armature Winding Design of a Synchronous Motor
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AC Loss Prediction in BSCCO-Tape Armature Winding Design of a Synchronous Motor

机译:同步电动机的BSCCO-Tape电枢绕组设计中的交流损耗预测

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A permanent-magnet synchronous motor with high- ${rm T}_{rm c}$ superconducting (HTS) armature operated at sub-cooled liquid nitrogen temperature has been designed. The prototype model has a ten-pole rotor and twelve sets of armature windings which are fabricated with BSCCO tapes, and its output power is 400 kW at the rated speed of 250 rpm. In order to decrease the AC loss of HTS coils to an appropriate level, the conventional stator iron cores are adopted. The coil design, behaviors of HTS conductors, even cooling system design will be proved in the armature case. And the prediction of AC loss in stacked tape conductor exposed to external magnetic fields with various directions have been carried out using FEA method. Based on the 3D magnetic field finite element analyses, this paper presents an AC loss analysis method for the armature winding and provides upper the limit of operating temperature for the cooling system.
机译:设计了一种在超低温液态氮温度下运行的具有高$ {rm T} _ {rm c} $超导(HTS)电枢的永磁同步电动机。原型模型具有一个十极转子和十二组由BSCCO胶带制成的电枢绕组,在250 rpm的额定转速下其输出功率为400 kW。为了将高温超导线圈的交流损耗降低到适当的水平,采用了常规的定子铁芯。电枢箱将证明线圈设计,高温超导导体的性能,甚至冷却系统设计。并且已经使用FEA方法对暴露于各种方向的外部磁场的堆叠带状导体中的AC损耗进行了预测。基于3D磁场有限元分析,提出了一种电枢绕组交流损耗分析方法,为冷却系统的工作温度提供了上限。

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