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Coupling Vortical Bulk Flows to the Air–Water Interface: From Putting Oil on Troubled Waters to Surfactants on Protein Solutions

机译:联轴器涡流流到空气水接口:从陷入困境的水面上的油脂到蛋白质溶液上的表面活性剂

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摘要

The air–water interface in flowing systems remains a challenge to model, even in cases where the interface is essentially flat. This is because even though each side is governed by the Navier–Stokes equations, the stress balance which provides the boundary conditions for the equations involves properties associated with surfactants that are inevitably present at the air–water interface. Aside from challenges in measuring interfacial properties, either intrinsic or flow-dependent, the two-way coupling of bulk and interfacial flows is non-trivial, even for very simple flow geometries. Here, we present an overview of the physics associated with surfactant monolayers of flowing liquid and describe how the monolayer affects the bulk flow and how the monolayer is transported and deformed by the bulk flow. The emphasis is primarily on cylindrical flow geometries, and both Newtonian and non-Newtonian interfacial responses are considered. We consider interfacial flows that are solenoidal as well as those where the surface velocity is not divergence free.
机译:流动系统中的空气水接口仍然是模型的挑战,即使在界面基本上是平坦的情况下也是挑战。这是因为即使每一方由Navier-Stokes方程管辖,即使向等方程提供边界条件的压力平衡也涉及与不可避免地存在于空气界面的表面活性剂相关的性质。除了测量界面性质的挑战之外,堆积或流动的依赖性,散装和界面流动的双向耦合也是非琐碎的,即使对于非常简单的流动几何形状。这里,我们概述了与流动液体活性剂单层相关的物理学的概述,并描述单层影响散装流动以及单层通过散装流动传送和变形单层。重点主要是圆柱形流动几何形状,并且考虑牛顿和非牛顿界面反应。我们考虑界面流动,这些流量以及表面速度不自由地偏离的那些。

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