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Approximate three-dimensional finite element analysis of large permanent magnet sychronous generators with stator radial ventilating ducts

机译:带有定子径向通风管的大型永磁同步发电机的三维有限元近似分析

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The stator lamination cores in most of the high-power permanent magnet synchronous machine (PMSM) are axially segmented into a number of substacks by stator radial ventilating ducts so that the effective thermal management of the stator windings can be accomplished. However, these radial cooling ducts will impose certain impacts on electromagnetic characteristics especially in the axial direction, which could potentially lead to inaccurate predictions from conventional two-dimensional (2-D) finite element analysis (FEA). Hence, complex three-dimensional (3-D) FEA, which is of high computational intensity, is essential to accurately evaluate the overall effects of these air ducts. A novel approach based on synthesized 3-D FEA with approximate boundary conditions is proposed in this paper in order to alleviate computational load. The results from the 2-D, proposed synthesized and comprehensive 3-D FEA methods have revealed that the proposed 3-D FEA method can not only deliver more accurate predictions than the conventional 2-D FEA one, but also consume much less computational time than the comprehensive 3-D FEA one.
机译:大多数大功率永磁同步电机(PMSM)中的定子叠片铁心通过定子径向通风管道轴向分割为多个子堆,从而可以实现定子绕组的有效热管理。但是,这些径向冷却管道会对电磁特性产生某些影响,尤其是在轴向方向上,这可能会导致常规二维(2-D)有限元分析(FEA)的预测不准确。因此,复杂的三维(3-D)FEA具有很高的计算强度,对于准确评估这些风管的整体效果至关重要。为了减轻计算量,本文提出了一种基于具有近似边界条件的合成3-D FEA的新方法。 2-D,拟议的综合3-D FEA方法的结果表明,与传统的2-D FEA相比,拟议的3-D FEA方法不仅可以提供更准确的预测,而且计算时间也更少而不是全面的3D FEA。

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