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Some remarks, on the validity of Reynolds equation in the modeling of lubricant film flows on the surface roughness scale

机译:关于雷诺方程在表面粗糙度尺度上润滑膜流动建模中的有效性的一些评论

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The objective of this paper is to investigate the flow in a lubricant film on the surface roughness scale and to compare the numerical solutions obtained by two different solution approaches. This is accomplished firstly by the CFD-approach (computational fluid dynamic approach) where the momentum and continuity equations are solved separately, and secondly the Reynolds equation approach, which is a combination and a simplification of the above equations. The rheology is assumed to be both Newtonian and non-Newtonian. An Eyring model is used in the non-Newtonian case. The result shows that discrepancies between the two approaches may occur, primarily due to a singularity which appears in the momentum equations when the stresses in the lubricant attain magnitudes that are common in EHL. This singularity is not represented by the Reynolds equation. If however the theology is, shifted to a non-Newtonian Eyring model the deviations between the two solution approaches is removed or reduced. The second source of discrepancies between the two approaches is the film thickness to wavelength scale omega. It will be shown that the Reynolds equation is valid until this ratio is approximately O(10(-2)).
机译:本文的目的是研究润滑膜在表面粗糙度尺度上的流动,并比较通过两种不同的求解方法获得的数值解。这首先通过CFD方法(计算流体动力学方法)完成,在该方法中动量和连续性方程式分别求解,其次是雷诺兹方程式方法,该方法是上述方程式的组合和简化。假定流变学是牛顿的和非牛顿的。在非牛顿情况下使用Eyring模型。结果表明,两种方法之间可能会出现差异,这主要是由于当润滑剂中的应力达到EHL中常见的幅度时,动量方程中才会出现奇异性。雷诺方程不代表这种奇异性。但是,如果将神学方法转换为非牛顿Eyring模型,则可以消除或减小两种求解方法之间的偏差。两种方法之间差异的第二个来源是薄膜厚度到波长刻度Ω。将证明雷诺方程是有效的,直到该比率约为O(10(-2))为止。

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