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The influence of Marangoni convection on fluid dynamics of oscillating single rising droplets

机译:Marangoni对流对振荡的单个上升液滴的流体动力学的影响

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摘要

The impact of solutal Marangoni convection on fluid dynamics and mass transfer cannot be described by means of analytical methods, due to their inherently three-dimensional, highly unsteady and non-linear nature. Hence, experimental and-to an increasing degree-numerical efforts are needed to reveal the underlying phenomena. This paper presents three-dimensional numerical simulations of an oscillating single droplet rising in a quiescent ambient liquid, with and without the Marangoni effect induced by the interfacial mass transfer of a solute. For the simulations, a CFD code based on the level set method was implemented in the open-source software OpenFOAM~?. Experiments in the oscillating droplet regime have been carried out with the toluene/acetone/water system for different initial solute concentrations (reflecting different strengths of Marangoni convection) to obtain data for the validation of the numerical results. Comparisons between experimental and simulation results regarding the velocity, shape and trajectories of a rising droplet show a good qualitative and quantitative agreement. This will provide a basis for comprehensive mass transfer studies at deformable and oscillating droplets with simultaneous interfacial phenomena, such as Marangoni convection and surfactant adsorption, in the future.
机译:溶质的马兰戈尼对流对流体动力学和传质的影响由于其固有的三维,高度不稳定和非线性特性,无法通过分析方法来描述。因此,需要进行实验并且在越来越多的程度上用数字的努力来揭示潜在的现象。本文提出了在静止的环境液体中振荡的单个液滴上升的三维数值模拟,有和没有由溶质的界面传质引起的马兰戈尼效应。为了进行仿真,在开源软件OpenFOAM中实现了基于水平集方法的CFD代码。已经在甲苯/丙酮/水系统中对不同的初始溶质浓度(反映了不同的Marangoni对流强度)进行了振荡液滴实验,以获得用于验证数值结果的数据。关于上升液滴的速度,形状和轨迹的实验和仿真结果之间的比较显示出良好的定性和定量一致性。这将为将来对同时发生界面现象(例如Marangoni对流和表面活性剂吸附)的可变形和振荡液滴的全面传质研究提供基础。

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