Numerical Investigation of Turbulence Models for a Superlaminar Journal Bearing

IF 1.5 Q3 ENGINEERING, MECHANICAL Advances in Tribology Pub Date : 2018-01-03 DOI:10.1155/2018/2841303
A. Ding, Xiao-dong Ren, Xue-song Li, C. Gu
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引用次数: 11

Abstract

With rotating machineries working at high speeds, oil flow in bearings becomes superlaminar. Under superlaminar conditions, flow exhibits between laminar and fully developed turbulence. In this study, superlaminar oil flow in an oil-lubricated tilting-pad journal bearing is analyzed through computational fluid dynamics (CFD). A three-dimensional bearing model is established. CFD results from the laminar model and 14 turbulence models are compared with experimental findings. The laminar simulation results of pad-side pressure are inconsistent with the experimental data. Thus, the turbulence effects on superlaminar flow should be considered. The simulated temperature and pressure distributions from the classical fully developed turbulence models cannot correctly fit the experimental data. As such, turbulence models should be corrected for superlaminar flow. However, several corrections, such as transition correction, are unsuitable. Among all the flow models, the SST model with low-Re correction exhibits the best pressure distribution and turbulence viscosity ratio. Velocity profile analysis confirms that a buffer layer plays an important role in the superlaminar boundary layer. Classical fully developed turbulence models cannot accurately predict the buffer layer, but this problem can be resolved by initiating an appropriate low-Re correction. Therefore, the SST model with low-Re correction yields suitable results for superlaminar flows in bearings.
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超层流滑动轴承湍流模型的数值研究
随着旋转机械在高速下工作,轴承中的油流变得极为平缓。在超层流条件下,流动表现出介于层流和完全发展的湍流之间。在本研究中,通过计算流体动力学(CFD)分析了油润滑可倾瓦轴颈轴承中的超层流。建立了三维轴承模型。将层流模型和14个湍流模型的CFD结果与实验结果进行了比较。垫侧压力的层流模拟结果与实验数据不一致。因此,应考虑湍流对超层流的影响。来自完全发展起来的经典湍流模型的模拟温度和压力分布不能正确地拟合实验数据。因此,湍流模型应该针对超层流进行校正。然而,一些校正,如过渡校正,是不合适的。在所有的流动模型中,具有低Re校正的SST模型表现出最好的压力分布和湍流粘度比。速度剖面分析证实,缓冲层在超高层边界层中起着重要作用。经典的完全发展的湍流模型不能准确预测缓冲层,但这个问题可以通过启动适当的低Re校正来解决。因此,具有低Re校正的SST模型对于轴承中的超层流产生了合适的结果。
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来源期刊
Advances in Tribology
Advances in Tribology ENGINEERING, MECHANICAL-
CiteScore
5.00
自引率
0.00%
发文量
1
审稿时长
13 weeks
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