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首页> 外文期刊>Magnetics, IEEE Transactions on >Influence of Copper Plating on Electromagnetic and Temperature Fields in a High-Speed Permanent-Magnet Generator
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Influence of Copper Plating on Electromagnetic and Temperature Fields in a High-Speed Permanent-Magnet Generator

机译:镀铜对高速永磁发电机电磁场和温度场的影响

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摘要

In a high-speed permanent-magnet generator (HSPMG), an alloy sleeve is often used to prevent damage to rotor magnets caused by the large rotational centrifugal forces. However, eddy-current losses appearing in the sleeve increase the generator working temperature, which may reduce the generator performance and even cause thermal demagnetization of the magnets. Thus, a sleeve scheme designed with low eddy current losses is necessary, and a rotor structure with copper plating is presented in this paper. The two-dimensional mathematical model of a 117 kW, 60 000 rpm HSPMG is established, and the electromagnetic field in the generator is calculated using the finite element method. The results show the effectiveness of the copper plating in reducing the eddy current losses in the rotor, and the influences of the sleeve thickness and the copper layer thickness on rotor eddy current losses are analyzed. Using the fluid-thermal coupling method, the temperature distribution of the generator with different copper layer thicknesses is comparatively analyzed based on the theories of fluid mechanics and heat transfer. The relationship between the temperature and the copper layer thickness is obtained, and finally the temperature of the permanent magnets, which is the part most seriously affected by the temperature, is given with different copper layer thicknesses. The obtained conclusions may provide useful reference for the design and research of HSPMG.
机译:在高速永磁发电机(HSPMG)中,通常使用合金套筒来防止由于较大的旋转离心力而对转子磁铁造成损坏。但是,在套筒中出现的涡流损耗会提高发电机的工作温度,这可能会降低发电机的性能,甚至导致磁体发生热退磁。因此,必须设计一种具有低涡流损耗的套筒方案,并提出一种采用镀铜的转子结构。建立了117 kW,60 000 rpm HSPMG的二维数学模型,并使用有限元方法计算了发电机中的电磁场。结果表明,镀铜在降低转子涡流损耗方面是有效的,并分析了套管厚度和铜层厚度对转子涡流损耗的影响。基于流体力学和传热理论,采用流热耦合方法对不同铜层厚度的发电机的温度分布进行了比较分析。得到温度与铜层厚度之间的关系,最后,以不同的铜层厚度给出永久磁铁的温度,该永久磁铁是受温度影响最严重的部分。所得结论可为HSPMG的设计和研究提供有益的参考。

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