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Marangoni-driven spreading along liquid-liquid interfaces

机译:Marangoni驱动的液-液界面扩散

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Marangoni-driven spreading at gas-liquid interfaces has been studied extensively over the past years but so far the spreading kinetics along the interface between immiscible liquids has not been investigated systematically. In this study, the spreading kinetics of aqueous solutions of sodium dodecyl sulfate and dodecyl trimethyl ammonium bromide along the interface between thick layers of water and decane has been investigated by means of two different optical visualization techniques (dye tracer and laser shadowgraphy). The spreading kinetics follows a power law where the radius r as function of time t scales as r(t)proportional to t(3/4) indicating large similarities with Marangoni-driven spreading at air-liquid interfaces. The existing scaling law for spreading at air-liquid interfaces is based on the balance between an interfacial tension gradient and the viscous stress in the fluid layers beneath the interface. When the viscous dissipation in the two boundary layers below and above the interface is factored into the scaling law, quantitative agreement with experimental data is obtained. Marangoni-driven spreading along an interface is a fast transport mechanism. The velocity of the leading edge lies within the range of group velocities of capillary waves.
机译:在过去的几年中,已经广泛研究了在气体-液体界面处由Marangoni驱动的扩散,但是到目前为止,还没有系统地研究沿不混溶液体之间的界面的扩散动力学。在这项研究中,已通过两种不同的光学可视化技术(染料示踪剂和激光阴影照相法)研究了十二烷基硫酸钠和十二烷基三甲基溴化铵水溶液在水和癸烷厚层之间的界面扩散动力学。扩散动力学遵循幂定律,其中半径r作为时间t的函数与r(t)成比例于t(3/4)的比例,表明与在气液界面处的Marangoni驱动的扩散有很大的相似性。现有的在气液界面处扩散的比例定律基于界面张力梯度和界面下方流体层中的粘性应力之间的平衡。当界面下方和上方两个边界层的粘性耗散被纳入比例定律时,与实验数据的定量一致性就得到了。 Marangoni驱动的沿界面传播是一种快速的传输机制。前缘的速度在毛细管波的群速度范围内。

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