首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Linear stability analysis of finite length journal bearings in laminar and turbulent regimes
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Linear stability analysis of finite length journal bearings in laminar and turbulent regimes

机译:层流和湍流制度有限度轴承线性稳定性分析

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摘要

Dynamic coefficients of a finite length journal bearing are numerically calculated under laminar and turbulent regimes based on Ng-Pan-Elrod and Constantinescu models. Linear stability charts of a flexible rotor supported on laminar and turbulent journal bearings are found by calculating the threshold speed of instability associated to the start of instable oil whirl phenomenon. Local journal trajectories of the rotor-bearing system were found at different operating conditions solely based on the calculated dynamic coefficients in laminar and turbulent flow. Results show no difference between laminar and turbulent models at low loading while significant change of the size of the stable region was observed by increasing the Reynolds number in turbulent models. Stable margins based on the laminar flow at relatively low Sommerfeld numbers S0.05 were shown to fall inside the unstable region and hence rendering the laminar stability curves obsolete at high Reynolds numbers. Ng-Pan turbulent model was found to be generally more conservative and hence is recommended for rotor-bearing design.
机译:有限度轴颈轴承的动态系数在基于NG-PAN-ELROD和CONSANCLENECU模型的层流和湍流状态下进行数值计算。通过计算与不稳定的油旋转现象开始相关的不稳定性的阈值速度,发现了在层流和湍流轴颈轴承上的柔性转子的线性稳定性图。在不同的操作条件下仅基于层流和湍流的计算动态系数,在不同的操作条件下发现了转子系统的局部杂志。结果在低负载下显示了层流和湍流模型之间的差异,而通过增加湍流模型中的雷诺数,观察到稳定区域大小的显着变化。基于相对低的Sommerfeld号S0.05的层流的稳定边缘显示在不稳定区域内部,因此使层状稳定性曲线过时地在高雷诺数中逐渐过时。发现NG-PAN湍流模型通常是更保守的,因此建议用于转子设计。

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