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Dynamic Analysis of a Flexible Rotor Supported on Two Turbulent Model Journal Bearings with Micropolar Fluid Lubrication

机译:两种湍流模型轴承轴上柔性转子的动态分析,微柱液润滑

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This paper presents the complex dynamic analysis of a flexible rotor–bearing system supported by two turbulent micropolar fluid film journal bearings under nonlinear suspension. The Modified Reynolds equation based on the assumptions of turbulent flow and the micropolar parameters has been considered. The system considers Short bearing approximation to simplify the numerical computations. The pressure distribution thus obtained is used to find out the resulting forces about the journal center in the radial and tangential directions. The Non-dimensional dynamic equations are derived considering appropriate non dimensional parameters and solved using MATLAB for a wide range of non-dimensional speed ratios. Plots of the journal center trajectories and rotor center trajectories are obtained. The results show that the system undergoes undesirable nonsynchronous vibrations due to bearing center displacement. Micropolar fluid is found to stabilize the system even when the flow of the system becomes turbulent. The study presented enhances the understanding of the nonlinear dynamics of turbulent journal bearings with respect to dimensionless parameters.
机译:本文介绍了在非线性悬浮液下由两个湍流微柱流体膜轴颈轴承支撑的柔性转子轴承系统的复杂动态分析。已经考虑了基于湍流流量的假设和微多极角参数的改进的雷诺等式。该系统考虑了短的轴承近似,以简化数值计算。由此获得的压力分布用于在径向和切向方向上围绕期刊中心找到所得到的力。考虑适当的非维度参数来导出非维度动态方程,并使用MATLAB解决广泛的非维度速度比。获得期刊中心轨迹和转子中心轨迹的图。结果表明,由于轴承中心位移,该系统经历了不希望的非同步振动。发现微柱液也稳定了系统,即使系统的流动变湍流。该研究提出了了解对无量纲参数的湍流轴颈轴承非线性动力学的理解。

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