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Finite Element Analysis of a Rotor Supported with Hydrodynamic Journal Bearings

机译:流体动压轴承支承转子的有限元分析

摘要

This work was aimed at studying and performing an analysis of a Rotor Bearing System with Journal Bearings by finite element analysis techniques. The Eigenvalue problems for equation of motions of Finite elements applied to rotors and bearings are stated. Design of a rotor bearing system is based upon calculation of various natural frequencies, critical speeds and stability analysis. The results for up to 80 element mesh were plotted. A computational procedure for finding natural frequencies of vibrating rotors with damping, gyroscopic and inertial effects is presented. The dynamic coefficients associated were computed by adopting perturbation scheme on governing equation for fluid film bearings. Rotating systems are widely studied under rotordynamics in industries for designing the systems below critical speeds and stability.
机译:这项工作旨在通过有限元分析技术研究和分析带有轴颈轴承的转子轴承系统。阐述了应用于转子和轴承的有限元运动方程的特征值问题。转子轴承系统的设计基于各种固有频率,临界速度和稳定性分析的计算。绘制了多达80个元素网格的结果。提出了一种寻找具有阻尼,陀螺和惯性效应的振动转子固有频率的计算程序。通过对流体膜轴承的控制方程采用摄动方案来计算相关的动态系数。旋转系统在工业领域中被广泛地研究转子动力学,以设计低于临界速度和稳定性的系统。

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  • 作者

    Ranjit Kumar A;

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  • 年度 2015
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