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Vibration analysis of coupled bending-torsional rotor-bearing system for hydraulic generating set with rub-impact under electromagnetic excitation

机译:水力发电机组弯扭转子轴承系统电磁激励下的振动分析

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Based on Jeffcott rotor model, the coupled bending-torsional rotor-bearing system with rub-impact under electromagnetic excitation for hydraulic generating set is established and the corresponding equation is given. The influence of excitation current, mass eccentricity and electromagnetic torque in the system is investigated by taking use of numerical method. The simulation results show that eccentricity is the crucial factor causing the changes of system dynamic characteristics, compared to the effect of torsional degree of freedom. And the larger the eccentricity is, the more obviously it affects the system responses. While the complicated dynamic behavior of bending vibration response can be restrained, due to the introduction of torsion motion, which has the property to suppress complex dynamic response of system, particularly, the inhibited and improved effect is more evident, as the eccentricity turns to be smaller. In addition, the unstable jumping phenomena of torsional response can be motivated by electromagnetic torque, which has to be taken seriously during the process of model establishment and dynamic analysis of system. From the global view of electromechanical coupling characteristics, the coupled bending-torsional vibration model with rub-impact under electromagnetic excitation can supply a more comprehensive reflection about the dynamic characteristics of system and provide useful reference with system state recognition and fault diagnosis.
机译:基于Jeffcott转子模型,建立了水力发电机组电磁激励下具有碰摩碰摩的弯扭转子轴承系统,并给出了相应的方程。利用数值方法研究了励磁电流,质量偏心率和电磁转矩对系统的影响。仿真结果表明,与扭转自由度的影响相比,偏心率是引起系统动态特性变化的关键因素。离心率越大,对系统响应的影响就越明显。虽然可以抑制弯曲振动响应的复杂动态行为,但由于引入了扭转运动,具有抑制系统复杂动态响应的特性,特别是随着偏心率的增加,抑制和改善效果更加明显。较小。另外,扭转响应的不稳定跳跃现象可能是由电磁转矩引起的,在建立模型和系统动态分析过程中必须认真对待。从机电耦合特性的整体观点来看,电磁激励下具有摩擦冲击的弯扭耦合振动模型可以为系统的动态特性提供更​​全面的反映,并为系统状态识别和故障诊断提供有益的参考。

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