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A Multiscale Approach to the Mixed Lubrication Regime: Application to Mechanical Seals

机译:混合润滑方式的多尺度方法:在机械密封中的应用

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This paper presents a multiscale approach to solve the problem of mixed lubrication in mechanical seals. In fact, the lubricating fluid film developed between the faces of mechanical seals is usually a fraction of a micron in thickness, leading to a mixed lubrication regime. However, over a velocity threshold the fluid film can completely separate the faces because of the hydrodynamic effect due to the surface roughness, even if the surfaces are nominally parallel. To study this phenomenon, a deterministic model is preferable because the stochastic theory based on flow factors is unable to reproduce this effect. Unfortunately, a deterministic approach needs a prohibitive amount of nodes and computation time. This is why a multiscale model is proposed. It is composed of a micro-deterministic model working on a small area coupled with a macro model giving the pressure distribution on a macro-mesh. The results of the multiscale model are compared to those of a pure deterministic model in terms of accuracy and computation time when the area of the macro-cells is varied.
机译:本文提出了一种多尺度方法来解决机械密封中的混合润滑问题。实际上,在机械密封面之间形成的润滑液膜通常只有几分之一微米的厚度,从而导致混合润滑方式。但是,由于表面粗糙度引起的流体动力学效应,即使在表面名义上平行的情况下,在速度阈值之上,流体膜也可以完全分离表面。要研究此现象,最好使用确定性模型,因为基于流量因素的随机理论无法重现此效应。不幸的是,确定性方法需要大量的节点和计算时间。这就是提出多尺度模型的原因。它由一个在小区域上工作的微观确定性模型和一个宏观模型组成,该模型给出了宏观网格上的压力分布。当宏单元的面积变化时,将多尺度模型的结果与纯确定性模型的结果在准确性和计算时间方面进行比较。

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