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An approximate solution of oil film forces of turbulent finite length journal bearing

机译:有限长度湍流轴颈轴承油膜力的近似解

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摘要

An approximate analytical method is proposed for calculating oil film forces of turbulent finite length journal bearings. The dynamic 'π' oil film assumption is usually taken to determine oil film forces in the dynamic analysis of hydrodynamic journal bearing-rotor systems. However oil film field is not in the 'π' zone, i.e. the start position of the oil film is not 0, and the termination position of the oil film is not 'π'. Based on the variational principle, separation of variables is employed to obtain the pressure distribution in this paper. The pressure distribution of the infinitely long journal bearing model is taken as a circumferential separable function of the pressure distribution. The start and termination positions of oil film in the circumferential direction are determined by using the continuity condition. The axial separable function of the pressure distribution is obtained by the variational principle and the circumferential separable function. The results calculated by the proposed method are in good agreement with the oil film forces by the finite element method, and the computing cost is reduced greatly. Meanwhile, the influence of the parameters on the oil film forces is analyzed.
机译:提出了一种近似的解析方法来计算有限长度湍流轴颈轴承的油膜力。在流体动力轴颈轴承-转子系统的动力学分析中,通常采用动态“π”油膜假设来确定油膜力。但是,油膜场不在“π”区,即,油膜的起始位置不为0,而油膜的终止位置也不为“π”。基于变分原理,采用变量分离得到压力分布。无限长轴颈轴承模型的压力分布被视为压力分布的周向可分离函数。通过使用连续性条件来确定油膜在周向上的起始和终止位置。压力分布的轴向可分离函数是通过变化原理和圆周可分离函数获得的。所提方法的计算结果与有限元法的油膜力计算结果吻合较好,大大降低了计算成本。同时,分析了参数对油膜力的影响。

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