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An innovative natural air-cooling system technique for temperature-rise suppression on the permanent magnet synchronous machines

机译:一种用于抑制永磁同步电机温度升高的创新自然风冷系统技术

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This paper investigates a three-dimensional finite-element (3D-FEA) thermal analysis based on an embedded cooling system with various number of ducts for the outer-rotor permanent magnet synchronous machines (PMSMs). The segmented stator core due to closed-slot topology is the reason of a high temperature-rise at this core. The application-oriented study is aimed to reduce temperature-rise of the conventional model at the stator core via radial and circumferential airflow ducts. A temperature distribution, and heat transfer comparison among all FE models such as conventional, two and four ducts in-core natural cooling systems will be comprehensively presented through freezing the electromagnetic performance. The alternative models using FEA, and computational fluid dynamic (CFD) are experimentally verified the innovative technique, in which the generator is operated by a vertical axis twisted savonius type wind turbine (VAWT). (C) 2017 Published by Elsevier B.V.
机译:本文研究了一种基于嵌入式冷却系统的三维有限元(3D-FEA)热分析,该系统具有各种数量的外转子永磁同步电机(PMSM)管道。由于闭槽拓扑而导致的分段定子铁芯是该铁芯温度升高的原因。面向应用的研究旨在通过径向和周向气流管道降低传统模型在定子铁心处的温度升高。通过冻结电磁性能,将全面介绍所有有限元模型(例如常规,两管道和四管道堆芯自然冷却系统)之间的温度分布和传热比较。使用有限元分析和计算流体动力学(CFD)的替代模型通过实验验证了该创新技术,其中发电机由垂直轴扭曲的萨沃纽斯式风力涡轮机(VAWT)操作。 (C)2017由Elsevier B.V.发布

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