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首页> 外文期刊>International journal of non-linear mechanics >Whirling Frequencies And Amplitudes Due To Deviations Of Generator Shape
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Whirling Frequencies And Amplitudes Due To Deviations Of Generator Shape

机译:发电机形状偏差引起的旋转频率和振幅

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Earlier measurements in large synchronous generators indicate the existence of backward whirling motion, and also relatively large deviations of shape in both the rotor and the stator. These non-symmetric geometries produce an attraction force between the rotor and the stator, called unbalanced magnetic pull (UMP). The target of this paper is to analyse the whirling frequencies and amplitude of the response for large synchronous generators with a high number of poles, due to deviations of shape in the rotor and stator. A mathematical model is developed to describe the shapes of the rotor and stator, and the corresponding UMP is obtained by using the law of energy conservation. The UMP is analysed due to different deviations of shape. The result gives the average angular frequency and the magnitude of the UMP for certain deviations of shape. From this result, the whirling frequency and the amplitude of the corresponding response can be approximated. Simulations of the response of a Jeffcott rotor model show good agreement with the theoretical results of the UMP for some generator geometries. The conclusion is that different whirling frequencies, both backward and forward whirling, can occur in these machines due to deviations in shape of the generator. Therefore, the shape of the generator can excite resonance vibrations on several other frequencies than the rotation frequency. During maintenance of hydropower generators the shapes of the rotor and stator are frequently measured. The results from this paper can be used to evaluate such measurements and to explain the existence of complicated whirling motion.
机译:大型同步发电机的早期测量结果表明存在回旋运动,并且转子和定子的形状偏差也相对较大。这些不对称的几何形状在转子和定子之间产生吸引力,称为不平衡磁拉力(UMP)。本文的目的是分析由于转子和定子形状的偏差而导致的大量极数的大型同步发电机的回旋频率和响应幅度。建立了描述转子和定子形状的数学模型,并利用能量守恒定律获得了相应的UMP。由于形状的不同,对UMP进行了分析。结果给出了特定形状偏差下的平均角频率和UMP的大小。根据该结果,可以近似地回旋频率和相应响应的幅度。 Jeffcott转子模型的响应仿真与某些发电机几何形状的UMP的理论结果显示出很好的一致性。结论是,由于发电机形状的偏差,在这些机器中可能出现不同的回旋频率,包括向前和向后的回旋。因此,发电机的形状可以激发旋转频率以外的其他几个频率的共振振动。在水力发电机的维护期间,经常测量转子和定子的形状。本文的结果可用于评估此类测量结果,并解释复杂的旋转运动的存在。

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