论文标题
表面活性剂对高雷诺数处毛细管中的细长气泡的影响
Effect of surfactant on elongated bubbles in capillary tubes at high Reynolds number
论文作者
论文摘要
使用混合前轨/级别方法,研究了表面活性剂对通过圆形毛细管传播的尾巴和膜动力学的影响。重点放在粘性惯性方向上,这是在流动的雷诺数比统一大得多的情况下发生的。在这些条件下,“清洁”气泡在尾巴{magnini_prf_2017}的接近度中表现出界面起伏,幅度随雷诺数的增加而增加。我们对各种表面活性剂特性的影响进行系统分析,包括弹性,散装表面活性剂浓度,溶解度和扩散性,对惯性效应的存在,对气泡和流动动态。结果表明,表面活性剂的引入可有效抑制尾部的起伏,因为它们倾向于在气泡尾巴附近积聚。在这里,产生了巨大的Marangoni应力,从而导致气泡的局部“刚化”。对于较大的表面活性剂弹性和吸附深度,这种效果变得更加明显。在降低的表面活性剂溶解度下,在气泡后部形成了一个较厚的刚性膜区域,在该溶解度上形成了couette膜流动,而起伏仍然出现在下游“干净”膜区域的后缘。在这种情况下,气泡长度成为有影响力的参数,短气泡变得完全刚性。
The effect of surfactants on the tail and film dynamics of elongated gas bubbles propagating through circular capillary tubes is investigated by means of an extensive three-dimensional numerical study using a hybrid front-tracking/level-set method. The focus is on the visco-inertial regime, which occurs when the Reynolds number of the flow is much larger than unity. Under these conditions, `clean' bubbles exhibit interface undulations in the proximity of the tail \cite{Magnini_prf_2017}, with an amplitude that increases with the Reynolds number. We perform a systematic analysis of the impact of a wide range of surfactant properties, including elasticity, bulk surfactant concentration, solubility, and diffusivity, on the bubble and flow dynamics in the presence of inertial effects. The results show that the introduction of surfactants is effective in suppressing the tail undulations as they tend to accumulate near the bubble tail. Here, large Marangoni stresses are generated, which lead to a local `rigidification' of the bubble. This effect becomes more pronounced for larger surfactant elasticities and adsorption depths. At reduced surfactant solubility, a thicker rigid film region forms at the bubble rear, where a Couette film flow is established, while undulations still appear at the trailing edge of the downstream `clean' film region. In such conditions, the bubble length becomes an influential parameter, with short bubbles becoming completely rigid.