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Experimental study of surfactant transfer in fluid systems in microgravity conditions

机译:微重力条件下流体系统中表面活性剂转移的实验研究

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摘要

The paper presents the results of the space experiment studying the process of surfactant dissolution from a binary fluid drop in microgravity conditions. The experiment was performed during the flight of the space satellite "Foton M-3" in September 2007. Investigation of the surfactant diffusion was made using a new original setup based on the interfer-ometric method. The experimental cuvette represented a thin Hele-Shaw cell filled with water, which surrounded a drop in the form of a short liquid cylinder with a free lateral surface. The drop consisted of a binary mixture, in which one of the components was the surfactant easily dissolved in water. The use of interferometry made it possible to visualize and investigate evolution of the surfactant distributions and the flow structures in the drop and the surrounding liquid. The characteristic stages of the dissolution process were identified, and the rate of the concentration front propagation was defined. It was shown that in microgravity conditions the process of surfactant diffusion through the interface did not initiate an intensive solutal Marangoni convection as contrasted to the case of terrestrial simulation. The observed phenomenon has its origins in the long-lived fields of surfactant concentration formed near the interface due to the absence of the gravitational mechanisms of motion and large characteristic time of admixture diffusion which is hundreds of times longer than the time of thermal diffusion.
机译:本文介绍了空间实验的结果,该空间研究了表面活性剂在微重力条件下从二元液滴中溶解的过程。该实验是在2007年9月“ Foton M-3”空间卫星飞行期间进行的。表面活性剂扩散的研究是使用基于干涉测量法的新的原始设置进行的。实验比色杯代表一个充满水的稀薄的Hele-Shaw池,该池围绕着带有自由侧面的短液瓶形式的液滴。液滴由二元混合物组成,其中的一种成分是表面活性剂,易溶于水。干涉测量法的使用使可视化和研究液滴和周围液体中表面活性剂分布和流动结构的演变成为可能。确定了溶解过程的特征阶段,并定义了浓度前沿传播的速率。结果表明,与地面模拟情况相比,在微重力条件下,表面活性剂通过界面扩散的过程并未引起强烈的Marangoni对流。所观察到的现象起源于界面附近形成的表面活性剂浓度的长寿命场,这是由于缺乏运动的引力机制和较大的混合物扩散特征时间(比热扩散时间长数百倍)所致。

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