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Interfacial fluid flow for systems with anisotropic roughness

机译:各向异性粗糙度的系统界面流体流动

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I discuss fluid flow at the interface between solids with anisotropic roughness. I show that the Bruggeman effective medium theory and the critical junction theory give nearly the same results for the fluid flow conductivity. This shows that, in most cases, the surface roughness observed at high magnification is irrelevant for fluid flow problems such as the leakage of static seals, and fluid squeeze-out. The effective medium theory predicts that the fluid flow conductivity vanishes at the relative contact area A/A(0) = 0.5 independent of the anisotropy. However, the effective medium theory does not solve the elastic contact mechanics problem but is based on a purely geometric argument. Thus, for anisotropic roughness the contact area may percolate at different values of A/A(0) depending on the direction. We discuss how this may be taken into account in the effective medium and critical junction theories.
机译:我讨论具有各向异性粗糙度的固体之间的界面处的流体流动。 我表明,Brugmeman有效的中学理论和关键结理论为流体流动导电性提供了几乎相同的结果。 这表明,在大多数情况下,在高倍率观察到的表面粗糙度对于诸如静态密封件的泄漏和液体挤出的流体流动问题而无关。 有效介质理论预测流体流动电导率在相对接触区域A / A(0)= 0.5独立于各向异性。 然而,有效的介质理论不解决弹性接触力学问题,而是基于纯几何论证。 因此,对于各向异性粗糙度,接触面积可以根据方向在A / A(0)的不同值下渗滤。 我们讨论如何在有效的介质和关键交界管理理论中考虑到这一点。

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