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Non-linear stability analysis of micropolar fluid lubricated journal bearings with turbulent effect

机译:湍流效应的微柱液润滑轴颈轴承的非线性稳定性分析

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Purpose The purpose of this paper is to investigate the effect of turbulence on the stability characteristics of finite hydrodynamic journal bearing lubricated with micropolar fluid. Design/methodology/approach The non-dimensional transient Reynolds equation has been solved to obtain the non-dimensional pressure field which in turn used to obtain the load carrying capacity of the bearing. The second-order equations of motion applicable for journal bearing system have been solved using fourth-order Runge-Kutta method to obtain the stability characteristics. Findings It has been observed that turbulence has adverse effect on stability and the whirl ratio at laminar flow condition has the lowest value. Practical implications - The paper provides the stability characteristics of the finite journal bearing lubricated with micropolar fluid operating in turbulent regime which is very common in practical applications. Originality/ value - Non- linear stability analysis of micropolar fluid lubricated journal bearing operating in turbulent regime has not been reported in literatures so far. This paper is an effort to address the problem of non- linear stability of journal bearings under micropolar lubrication with turbulent effect. The results obtained provide useful information for designing the journal bearing system for high speed applications.
机译:目的本文的目的是探讨湍流对微柱液润滑有限液动力学轴颈稳定特性的影响。设计/方法/方法已经解决了非尺寸瞬态雷诺等式以获得非尺寸压力场,其又用于获得轴承的承载能力。应用适用于轴颈轴承系统的二阶运动的运动,采用四阶跑为-Kutta方法解决了,以获得稳定性特性。发现已经观察到,湍流对稳定性的不利影响,层流条件下的旋转比具有最低值。实际意义 - 本文提供了在湍流状态下运行的微柱液润滑的有限轴颈轴承的稳定性特性,其在实际应用中非常常见。目前尚未在文献中报告在湍流状态下操作的Micropolar流体润滑轴颈轴承的原始性/值 - 非线性稳定性分析。本文旨在解决与湍流效应下的微息润滑下轴颈轴承非线性稳定性问题。获得的结果提供了用于设计高速应用的轴承系统的有用信息。

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