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The accuracy of the compressible Reynolds equation for predicting the local pressure in gas-lubricated textured parallel slider bearings

机译:可压缩雷诺方程预测气体润滑的带纹理的平行滑动轴承中局部压力的精度

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摘要

The validity of the compressible Reynolds equation to predict the local pressure in a gas-lubricated, textured parallel slider bearing is investigated. The local bearing pressure is numerically simulated using the Reynolds equation and the Navier-Stokes equations for different texture geometries and operating conditions. The respective results are compared and the simplifying assumptions inherent in the application of the Reynolds equation are quantitatively evaluated. The deviation between the local bearing pressure obtained with the Reynolds equation and the Navier-Stokes equations increases with increasing texture aspect ratio, because a significant cross-film pressure gradient and a large velocity gradient in the sliding direction develop in the lubricant film. Inertia is found to be negligible throughout this study.
机译:研究了可压缩雷诺方程预测气体润滑的带纹理的平行滑动轴承中局部压力的有效性。对于不同的纹理几何形状和工作条件,使用雷诺方程和Navier-Stokes方程数值模拟了局部轴承压力。比较各个结果,并定量评估应用雷诺方程所固有的简化假设。通过雷诺方程和纳维尔-斯托克斯方程获得的局部轴承压力之间的偏差随织构纵横比的增加而增加,这是因为在润滑膜中形成了明显的跨膜压力梯度和滑动方向上的大速度梯度。整个研究发现惯性可以忽略不计。

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