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Simple and double microemulsions via the capillary breakup of highly stretched liquid jets

机译:通过高拉伸液体射流的毛细管破坏,获得简单和双重的微乳液

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摘要

We present an exhaustive experimental and theoretical study of the shapes of simple and compound jets formed when one (simple) or two (compound) immiscible liquids are injected into another liquid. The viscosity of the co-flowing external liquid is chosen to vary the characteristic Reynolds number of the outer stream, Re-o, over a wide range of values. Our slender-body theory in Gordillo et al. (J. Fluid Mech., vol. 738, 2014, pp. 335-357) is extended to predict the shapes of simple jets when Re-o is such that Re-o 1 and also to predict the shapes of compound jets in the case of Re-o less than or similar to O(1). The validity of our theoretical results, applicable to describe the dynamics of simple or compound jets within an outer carrier fluid in a wide variety of practical situations, is tested using a set-up where the liquids flow from a pressurized chamber towards an extraction tube, finding a very good agreement between the predicted and the observed shapes. Moreover, when Re-o less than or similar to O(1), and thanks to the fact that the liquid jets produced using our method are highly stretched in the downstream direction, we find that the values of the critical capillary number above which a steady stretched jet is produced, with the capillary number defined here using the outer stream velocity and viscosity, is well below the corresponding critical values characterizing other similar procedures, like flow focusing. This experimental result, which is supported by a spatio-temporal stability analysis in which the axial gradients of the unperturbed solution are retained in the dispersion relation, imply a substantial saving of energy and of the volume of outer liquid necessary to generate a steady capillary jet from which drops are regularly produced. Additionally, making use of continuity arguments and of the fact that drops are formed as a consequence of the growth of a capillary instability, we provide closed expressions for the drop diameters and their production frequencies when the capillary number is above the critical one, in very good agreement with experiments. The simple or double microemulsions generated by the capillary disintegration of the type of simple or compound highly stretched steady jets described here might find applications in biotechnology, pharmacy, cosmetics or materials science.
机译:我们对将一种(简单)或两种(化合物)不混溶的液体注入另一种液体时形成的简单和复合射流的形状进行了详尽的实验和理论研究。选择共同流动的外部液体的粘度以在很宽的数值范围内改变外部物流的特征雷诺数Re-o。我们在Gordillo等人中的细长体理论。 (J. Fluid Mech。,第738卷,2014年,第335-357页)已扩展为在Re-o使得Re-o 1时预测简单射流的形状,并预测复合射流的形状在Re-o小于或类似于O(1)的情况下。我们的理论结果的有效性(适用于描述各种实际情况下外部载液中的简单或复合射流的动力学)是使用一种装置进行测试的,其中液体从加压室流向提取管,在预测形状和观察形状之间找到很好的一致性。此外,当Re-o小于或等于O(1)时,并且由于使用我们的方法产生的液体射流在下游方向上高度拉伸的事实,我们发现临界毛细管数的值高于该值产生了稳定的拉伸射流,此处使用外部流速度和粘度定义的毛细管数远低于相应的临界值,该临界值表征了其他类似过程,例如流聚焦。该实验结果得到时空稳定性分析的支持,在该分析中,未扰动溶液的轴向梯度保持在弥散关系中,这意味着可以显着节省能量和产生稳定毛细喷射所需的外部液体量从中定期产生液滴。此外,利用连续性论证以及由于毛细管不稳定性的增长而形成液滴的事实,当毛细管数高于临界值时,我们提供了液滴直径及其产生频率的封闭表达式,与实验吻合良好。本文所述的简单或复合的高拉伸稳定喷嘴类型的毛细管崩解产生的简单或双重微乳液可能会在生物技术,药学,化妆品或材料科学中得到应用。

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