An investigation of winding temperature on a wind generator by using empirical model

Y. N. Zaiazmin, K. Ismail, M. A. Manan, Atikah Haji Awang, N. N. Ayop
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引用次数: 1

Abstract

Permanent magnet generators are the majority source of commercial electrical energy. With the recent reduction in the price of high performance magnet, it is made possible to construct a high efficiency compact generator. The problem with the compact generator is the temperature management. Too high magnet temperature could lead to irreversible demagnetization of the permanent magnet material. This paper proposes a method to formulate an empirical model based on the simulation data. Ansys Fluent software is used to simulate the heating and the cooling effects inside the generator. Design of Experiment is used to plan the experimental run so that the results are sufficient enough to formulate a linear or a nonlinear model. The formulated empirical model shows a good prediction of the winding coil temperature with the percentage of difference of less than 5 % for the natural convection cooling.
基于经验模型的风力发电机绕组温度研究
永磁发电机是商用电能的主要来源。随着近年来高性能磁体价格的下降,构造高效紧凑型发电机成为可能。紧凑型发电机的问题是温度管理。磁体温度过高会导致永磁材料的不可逆退磁。本文提出了一种基于仿真数据建立经验模型的方法。利用Ansys Fluent软件对发电机内部的加热和冷却效果进行了模拟。实验设计用于计划实验运行,使结果足以形成线性或非线性模型。所建立的经验模型对自然对流冷却的绕组温度有较好的预测效果,预测误差小于5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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