Free vibration analysis of a large hydroelectric generator and computation of radial electromagnetic exciting forces

H. C. Dirani, S. Cupillard, A. Merkhouf, S. Bélanger, A. Tounzi, A. Giroux, K. Al-haddad
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引用次数: 12

Abstract

Major causes of vibration in electrical machines come from electromagnetic sources. A serious problem may arise when the frequencies of the periodic exciting force are identical with, or close to, one of the natural frequencies of the machine. This paper presents a 2D modal analysis which calculates the natural frequencies and mode shapes of the stator and rotor of a large hydroelectric generator. The structural model takes into account the shape of the stator teeth and rotor poles. Moreover, a 2D electromagnetic transient simulation is performed in order to predict the frequencies and mode shapes of the electromagnetic exciting force. This advanced electromagnetic numerical simulation takes into account the winding sequence and the geometry of the rotor and stator given by the manufacturer. The purpose of this work is to validate a multiphysics tool for the future and recognize its advantages over the classical method.
大型水轮发电机自由振动分析及径向电磁力计算
电机振动的主要原因来自于电磁源。当周期激振力的频率与机器的一个固有频率相同或接近时,可能会出现严重的问题。本文采用二维模态分析方法计算了大型水轮发电机定子和转子的固有频率和振型。该结构模型考虑了定子齿和转子极的形状。此外,为了预测电磁激振力的频率和振型,还进行了二维电磁瞬态仿真。这种先进的电磁数值模拟考虑了制造商给出的绕组顺序和转子和定子的几何形状。这项工作的目的是验证未来的多物理场工具,并认识到它比经典方法的优势。
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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