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Reproducibility of Gaseous Phase Area on Journal Bearing Utilizing Multi-Phase Flow CFD Analysis under Flooded and Starved Lubrication Conditions

机译:淹没和饥饿润滑条件下利用多相流CFD分析在轴颈轴承上气相区域的重现性

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It is important to predict the gaseous phase area of journal bearing. However, a detailed calculation method for such gaseous phase areas has not yet been proposed. In this study, the gaseous-phase areas in small bore journal bearings under flooded and starved lubrication conditions are analyzed in terms of the computational fluid dynamics (CFD) of two-phase flow while using a volume of fluid (VOF) method. Furthermore, the influence of surface tension and vapor pressure conditions were investigated, and the analytical and experimental results were compared. The analytical results of VOF for vapor pressure and surface tension were observed to be consistent with the experimental observations under both flooded and starved lubrication conditions. Furthermore, under starved lubrication condition, the analytical results agree well with the observed results for the interface of the oil film and cavitation upon the rupture of the oil film. While using these results, CFD analysis of the two-phase flow of the VOF can be conducted in terms of vapor pressure and surface tension to estimate the gaseous-phase areas of journal bearings under flooded and starved lubrication conditions.
机译:预测轴颈轴承的气相面积很重要。然而,尚未提出用于这种气相面积的详细计算方法。在这项研究中,根据两相流的计算流体动力学(CFD),同时使用流体体积(VOF)方法分析了在满溢和饥饿润滑条件下小孔轴颈轴承中的气相区域。此外,研究了表面张力和蒸气压条件的影响,并比较了分析结果和实验结果。在充满油和饥饿的润滑条件下,VOF的蒸气压和表面张力分析结果与实验结果一致。此外,在饥饿的润滑条件下,分析结果与油膜界面和油膜破裂时的气穴现象的观察结果非常吻合。使用这些结果时,可以根据蒸气压和表面张力对VOF的两相流进行CFD分析,以估计在满油和饥饿的润滑条件下轴颈轴承的气相面积。

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