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Numerical analysis of nonlinear behaviors of a flexible rotor dynamic system with turbulent journal bearings support

机译:湍流轴承支撑柔性转子动力系统非线性行为的数值分析

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For description of rotor-bearing system, a symmetrical flexible rotor supported by two turbulent journal bearings is modeled. The analysis of the rotor-bearing system is implemented under the assumptions of turbulent lubricant flow and a long bearing approximation. The bifurcation and chaos behaviors of the system are investigated for various rotational speeds. The motion equations are solved by the self-adaptive Runge-Kutta method. The numerical results show that the bifurcation of nonlinear responses of the system varies with the rotational speed of the rotor. It is found that the rich and complex dynamic behaviors of the system include period-1, period-doubling, quasi-periodic and chaotic motions etc.
机译:对于轴承系统的描述,建模由两个湍流轴颈轴承支撑的对称柔性转子。转子轴承系统的分析在湍流润滑剂流动的假设和长轴承近似的假设下实现。对系统的分叉和混沌行为进行了各种转速。运动方程由自适应跑步-Kutta方法解决。数值结果表明,系统的非线性响应的分叉随着转子的旋转速度而变化。发现系统的丰富和复杂的动态行为包括期间-1,周期 - 加倍,准周期性和混沌动作等。

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