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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Irreversible particle motion in surfactant-laden interfaces due to pressure-dependent surface viscosity
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Irreversible particle motion in surfactant-laden interfaces due to pressure-dependent surface viscosity

机译:由于压力依赖性表面粘度,表面活性剂 - 升起界面中的不可逆颗粒运动

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The surface shear viscosity of an insoluble surfactant monolayer often depends strongly on its surface pressure. Here, we show that a particle moving within a bounded monolayer breaks the kinematic reversibility of low-Reynolds-number flows. The Lorentz reciprocal theorem allows such irreversibilities to be computed without solving the full nonlinear equations, giving the leading-order contribution of surface pressure-dependent surface viscosity. In particular, we show that a disc translating or rotating near an interfacial boundary experiences a force in the direction perpendicular to that boundary. In unbounded monolayers, coupled modes of motion can also lead to non-intuitive trajectories, which we illustrate using an interfacial analogue of the Magnus effect. This perturbative approach can be extended to more complex geometries, and to two-dimensional suspensions more generally.
机译:不溶性表面活性剂单层的表面剪切粘度通常在其表面压力上强烈依赖。 在这里,我们表明,在有界单层内移动的颗粒断开低雷诺数流的运动反转性。 Lorentz互易定理允许计算这种不偏差,而无需求解完全非线性方程,给出了表面压力依赖性表面粘度的领先贡献。 特别地,我们表明在界面边界附近的光盘在界面边界附近体验垂直于该边界的方向的力。 在无界的单层,耦合的运动模式也可以导致非直观的轨迹,我们使用大马效应的界面类似物来说明。 这种扰动方法可以延伸到更复杂的几何形状,并且更普遍地延伸到二维悬浮液。

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