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3D thermal analysis of a permanent magnet motor with cooling fans

机译:带冷却风扇的永磁电机的三维热分析

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摘要

Overheating of permanent magnet (PM) machines has become a major technical challenge as it gives rise to magnet demagnetization, degradation of insulation materials, and loss of motor efficiency. This paper proposes a state-of-the-art cooling system for an axial flux permanent magnet (AFPM) machine with the focus on its structural optimization. A computational fluid dynamics (CFD) simulation with thermal consideration has been shown to be an efficient approach in the literature and is thus employed in this work. Meanwhile, a simplified numerical approach to the AFPM machine with complex configuration in 3D consisting of conduction, forced convection, and conjugate heat transfer is taken as a case study. Different simplification methods (including configuration and working conditions) and two optimized fans for forced convection cooling are designed and installed on the AFPM machine and compared to a natural convection cooling system. The results show that the proposed approach is effective for analyzing the thermal performance of a complex AFPM machine and strikes a balance between reasonable simplification, accuracy, and computational resource.
机译:永磁(PM)机器的过热已经成为一项主要的技术挑战,因为它会导致磁体退磁,绝缘材料退化以及电动机效率下降。本文提出了一种用于轴流式永磁(AFPM)机器的最新冷却系统,重点是其结构优化。考虑到热量的计算流体动力学(CFD)模拟在文献中已被证明是一种有效的方法,因此被用于这项工作。同时,以简化的数值方法对AFPM机器进行了复杂的3D配置,包括传导,强制对流和共轭传热,作为案例研究。在AFPM机器上设计并安装了不同的简化方法(包括配置和工作条件)以及两个用于强制对流冷却的优化风扇,并与自然对流冷却系统进行了比较。结果表明,该方法可有效分析复杂AFPM机器的热性能,并在合理的简化程度,准确性和计算资源之间取得平衡。

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