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Numerical investigations on drag coefficient of circular cylinder with two free ends in roller bearings

机译:滚子轴承两台自由端循环滚动系数的数值研究

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摘要

In high speed roller bearings, the drag force due to the oil-air mixture present in the bearing cavity - that is acting against the roller movement - is usually computed with a two-dimensional model of flow around a cylinder of infinite length. However rollers are of finite length, and the flow is perturbed by the two free ends, the surrounding rings, the cage and other rolling elements. In this article, the Computational Fluid Dynamics (CFD) method is employed to analyze first the flow around one finite-length circular cylinder with two free ends in an open space. Then the model is changed to one finite cylinder and then several in-line circular cylinders sandwiched by two flat walls, which represents a simplified approach. The results indicate that both the flow pattern around the cylinder and its drag coefficient are modified in comparison with the two-dimensional model. Finally a relationship between the drag coefficient and the Reynolds number suitable for circular cylinder in roller bearings is proposed.
机译:在高速滚子轴承中,由于轴承腔中存在的油气混合物而导致的拖曳力 - 通常用无限长度的圆筒周围的流动模型计算。然而,辊子具有有限长度,并且流动由两个自由端,周围环,笼和其他滚动元件扰乱。在本文中,采用计算流体动力学(CFD)方法来分析一个有限长度圆柱周围的流动,在开放空间中具有两个自由端。然后将模型改为一个有限圆柱,然后几个夹在两个扁平墙上的一条线圆柱体,这代表了简化的方法。结果表明,与二维模型相比,改变圆柱周围的流动模式及其拖曳系数。最后提出了一种拖曳系数与适用于滚子轴承圆柱圆柱的雷诺数之间的关系。

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