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DISPERSION OF PARTICLES ON LIQUID SURFACES

机译:颗粒在液体表面上的分散

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摘要

In a recent study we have shown that when small particles, e.g., flour, pollen, glass, etc., contact an air-liquid interface, they disperse rapidly as if they were in an explosion. The rapid dispersion is due to the fact that the capillary force pulls particles into the interface causing them to accelerate to a large velocity. The vertical motion of a particle during its adsorption causes a radially-outward lateral (secondary) flow on the interface that causes nearby particles to move away. We present direct numerical simulation results for the adsorption of particles and show that the inertia of a particle plays an important role in its motion in the direction normal to a fluid-liquid interface. Although the importance of inertia diminishes with decreasing particle size, on an air-water interface the inertia continues to be important even when the size is as small as a few nanometers.
机译:在最近的一项研究中,我们表明,当小颗粒(例如面粉,花粉,玻璃等)接触气液界面时,它们会像爆炸一样迅速分散。快速分散是由于以下事实:毛细作用力将颗粒拉入界面,从而使它们加速到很大的速度。颗粒在其吸附过程中的垂直运动会在界面上引起径向向外的横向(二次)流动,从而导致附近的颗粒移开。我们提出了用于颗粒吸附的直接数值模拟结果,并显示了颗粒的惯性在其沿垂直于液-液界面的方向上的运动中起着重要作用。尽管惯性的重要性随着粒径的减小而减小,但是在空气-水界面上,即使粒径只有几纳米,惯性仍然很重要。

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