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首页> 外文期刊>The Journal of Chemical Physics >Motion of a spherical particle near a planar fluid-fluid interface: The effect of surface incompressibility
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Motion of a spherical particle near a planar fluid-fluid interface: The effect of surface incompressibility

机译:球形颗粒在平面流体-流体界面附近的运动:表面不可压缩性的影响

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摘要

Hydrodynamic coupling of a spherical particle to an undeformable planar fluid-fluid interface under creeping-flow conditions is discussed. The interface can be either surfactant-free or covered with an incompressible surfactant monolayer. In the incompressible surfactant limit, a uniform surfactant concentration is maintained by Marangoni stresses associated with infinitesimal surfactant redistribution. Our detailed numerical calculations show that the effect of surface incompressibility on lateral particle motion is accurately accounted for by the first reflection of the flow from the interface. For small particle-interface distances, the remaining contributions are significant, but they are weakly affected by the surface incompressibility. We show that for small particle-wall gaps, the transverse and lateral particle resistance coefficients can be rescaled onto corresponding universal master curves. The scaling functions depend on a scaling variable that combines the particle-wall gap with the viscosity ratio between fluids on both sides of the interface. A logarithmic dependence of the contact value of the lateral resistance function on the viscosity ratio is derived. Accurate numerical calculations are performed using our Cartesian-representation method.
机译:讨论了蠕变条件下球形颗粒与不可变形平面流体-流体界面的流体动力耦合。界面可以不含表面活性剂,也可以覆盖有不可压缩的表面活性剂单层。在不可压缩的表面活性剂极限内,与无限小的表面活性剂再分布有关的Marangoni应力保持了均匀的表面活性剂浓度。我们的详细数值计算表明,表面不可压缩性对颗粒横向运动的影响是通过界面的流动的首次反射而得到准确解释的。对于较小的粒子界面距离,其余的贡献很大,但是它们受表面不可压缩性的影响很小。我们表明,对于较小的颗粒壁间隙,可以将横向和横向颗粒阻力系数重新缩放到相应的通用主曲线上。缩放函数取决于缩放变量,该缩放变量将粒子壁间隙与界面两侧流体之间的粘度比结合在一起。得出横向电阻函数的接触值对粘度比的对数依赖性。使用我们的笛卡尔表示法进行精确的数值计算。

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