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Computational Model for Investigating the Influence of Unbalanced Magnetic Pull on the Radial Vibration of Large Hydro-Turbine Generators

机译:研究不平衡磁拉力对大型水轮发电机径向振动影响的计算模型

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摘要

A radial unbalanced magnetic pull (UMP) can be produced by an eccentric rotor and leads vibrations in large hydro-turbine generators. The influence of nonlinear UMP on the radial vibration of a large hydro-turbine generator is analyzed in this paper. The UMP is determined as a function of eccentricities and field currents by means of a simple analytical method instead of the finite element (FE) method. The analytical method employs the no-load characteristic curve of an electrical machine and saturation effects of the ferromagnetic materials are taken into consideration. FE rotor model of a large hydro-turbine generator unit, taking account of guide bearings, thrust bearing and periodic forces, is developed to investigate the influence of UMP on radial vibrations. The FE rotor model and the analytical method for UMP constitute the computational model. UMP is calculated under different rotor eccentricities and field currents by the proposed method. Comparing with other analytical methods, the effectiveness of the proposed method is verified. Dynamic responses of the FE model under different analytical methods for UMP are calculated to investigate the difference in vibration between different analytical methods. A simulated excitation test is performed and a comparative analysis between the calculated results and the field data is provided. The computational model is proved to be reasonable according to the analysis.
机译:偏心转子会产生径向不平衡的磁拉力(UMP),并导致大型水轮发电机的振动。本文分析了非线性UMP对大型水轮发电机径向振动的影响。通过简单的分析方法而不是有限元(FE)方法将UMP确定为偏心率和励磁电流的函数。该分析方法采用了电机的空载特性曲线,并考虑了铁磁材料的饱和效应。考虑到导向轴承,推力轴承和周期性力,开发了大型水轮发电机组的有限元转子模型,以研究UMP对径向振动的影响。有限元转子模型和UMP的解析方法构成了计算模型。该方法是在不同的转子偏心距和励磁电流下计算UMP的。与其他分析方法比较,验证了该方法的有效性。计算了UMP在不同分析方法下的有限元模型的动态响应,以研究不同分析方法之间的振动差异。进行了模拟激励测试,并提供了计算结果与现场数据之间的比较分析。通过分析证明该计算模型是合理的。

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