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Dynamic Response of an Unbalanced Rigid Rotor Bearing System With a Nonlinear Hydrodynamic Force

机译:具有非线性流体动力学力的不平衡刚性转子轴承系统的动态响应

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摘要

Planar dynamics of a rotor supported by long hydrodynamic journal bearing is investigated theoretically. An analytical model of the long journal bearing system is numerically integrated for analysis of fixed point and periodic oscillations. The nonlinearities in the system arise due to a nonlinear fluid film force acting on the journal. The influences of three dimensionless parameters, viz. bearing parameter, unbalance, and rotor speed, on the dynamic behavior of the rotor bearing system is studied and compared with the short journal bearing. For the same bearing parameter, short bearing has large operating speed compared to a long bearing. The results are presented in the form of a bifurcation diagram and Poincare map of the oscillations based on numerical computation. The considered unbalanced system shows periodic, multiperiodic, and quasi-periodic motion in different speed range. Jumping phenomenon is also observed for a high value of bearing parameter with unbalance.
机译:在理论上研究了长流体动力轴颈轴承支撑的转子的平面动态。 长轴颈轴承系统的分析模型在数量上集成,用于分析固定点和周期性振荡。 由于在杂志上作用的非线性流体膜力,系统中的非线性出现。 三维参数,Qual的影响。 轴承参数,不平衡和转子速度,研究了转子轴承系统的动态行为,并与短轴颈轴承进行比较。 对于相同的轴承参数,与长轴承相比,短轴承具有大的操作速度。 结果以分叉图和基于数值计算的振荡的散形图的形式呈现。 所考虑的不平衡系统显示了不同速度范围的周期性,多体和准周期性运动。 对于具有不平衡的轴承参数,还观察到跳跃现象。

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