首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >AN IMPROVED CATCHER BEARING MODEL AND AN EXPLANATION OF THE FORWARD WHIRL/WHIP PHENOMENON OBSERVED IN ACTIVE MAGNETIC BEARING TRANSIENT DROP EXPERIMENTS
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AN IMPROVED CATCHER BEARING MODEL AND AN EXPLANATION OF THE FORWARD WHIRL/WHIP PHENOMENON OBSERVED IN ACTIVE MAGNETIC BEARING TRANSIENT DROP EXPERIMENTS

机译:改进的轴承轴承模型和主动磁轴承瞬态下降实验中观察到的前向激振/鞭子现象的解释

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Though many approaches have been proposed in the literature to model the reaction forces in a catcher bearing (CB), there are still phenomena observed in experimental tests that cannot be explained by existing models. The following paper presents a novel approach to model a CB system. Some of the elements in the model have been previously introduced in the literature; however, there are other elements in the proposed model that are new, providing an explanation for the forward whirling phenomena that has been observed repeatedly in the literature. The proposed CB model is implemented in a finite element rotordynamic package, and nonlinear time-transient simulations are performed to predict published experimental results of a high speed vertical sub-scale compressor; with no other forces present in the model, the agreement between simulations and experimental data is favorable.The results presented herein show that friction between the journal and axial face of the catcher bearing results in a forward cross-coupled force that pushes the rotor in the direction of rotation. This force is proportional to the coefficient of friction between the axial face of the rotor and catcher bearing and the axial thrust on the rotor. This force results in synchronous whirl when the running speed is below a combined natural frequency of the rotor-stator system, and constant frequency whip when the speed is above a whip frequency.
机译:尽管在文献中已经提出了许多方法来对止动轴承(CB)中的反作用力进行建模,但是在实验测试中仍然观察到无法用现有模型解释的现象。以下论文提出了一种新颖的方法来对CB系统进行建模。该模型中的某些元素先前已在文献中介绍过;但是,建议的模型中还有其他一些新内容,这为文献中反复观察到的正向旋转现象提供了解释。所提出的CB模型是在有限元转子动力学软件包中实现的,并且进行了非线性时间瞬态仿真来预测高速立式子规模压缩机的已发布实验结果。在模型中不存在其他力的情况下,模拟和实验数据之间的一致性是有利的。本文显示的结果表明,止动轴承的轴颈和轴向面之间的摩擦会导致向前的横向耦合力,从而将转子推向转子。旋转方向。该力与转子轴向表面和止动轴承之间的摩擦系数以及转子轴向推力成正比。当运行速度低于转子-定子系统的组合固有频率时,该力导致同步旋转,而当速度高于鞭动频率时,则导致恒定频率鞭动。

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