Flow and Heat Transfer in Jet Cooling Rolling Bearing

Wei Wu, Jibin Hu, Shihua Yuan
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Abstract

The real flow field inside a jet cooling ball bearing is an air-oil two-phase flow since the air entrainment in the lubricant is ineluctable. The flow heat transfer characteristics are thought to have significant impacts in cooling effect forecast and temperature control. To this end, the fluid flow and heat transfer characteristics of the air-oil two-phase flow inside a jet cooling rolling bearing have been investigated by simulation and experiment herein. A multiphase VOF numerical method for the flow field calculation has been proposed. The temperature distributions of the bearing system have been measured, and the flow pattern under different operation speeds has also been captured. The parameter effects on the jet cooling rolling bearing flow field and temperature distribution have been revealed accordingly. The research findings can be used for the structural optimization and the precise lubrication design of the rolling bearing.
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射流冷却滚动轴承的流动与传热
由于润滑油中不可避免的夹带空气,射流冷却球轴承内部的实际流场是气-油两相流。流动换热特性对冷却效果预测和温度控制有重要影响。为此,通过仿真和实验研究了射流冷却滚动轴承内气-油两相流的流体流动和换热特性。提出了一种用于流场计算的多相VOF数值方法。测量了轴承系统的温度分布,并捕获了不同运行速度下的流态。揭示了参数对射流冷却滚动轴承流场和温度分布的影响。研究结果可用于滚动轴承的结构优化和精密润滑设计。
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