论文标题

微流体通道中多分散多个乳液的动力学

Dynamics of polydisperse multiple emulsions in microfluidic channels

论文作者

Tiribocchi, A., Montessori, A., Durve, M., Bonaccorso, F., Lauricella, M., Succi, S.

论文摘要

多种乳液是一类软体流体,其中将小滴浸入较大的液体中,并在长时间内通过表面活性剂稳定。我们最近表明,如果单分散多重乳液受到压力驱动的流动,则在后期出现了多种非平衡稳态,它们的动力学依赖于流体动力相互作用和内部滴度之间的多体碰撞之间的复杂相互作用。在这项工作中,我们使用晶格Boltzmann模拟来研究由微流体通道内的Poiseuille流动驱动的多分散双乳液的动力学。我们的结果表明,它们的行为受到多种因素的严重影响,例如初始位置,多分散性指数和乳液中占据的面积分数。在低面积分数下,内滴可能表现出周期性的旋转运动(在低多分散性下),或者在远离彼此的非运动型构型(在高polydispersity上)中排列成非运动型构型,但在较大的面积分数下,它们保持紧密接触并单向移动。这可以决定性地调节其近距离动力学,并通过时间效率样因子进行定量评估。模拟还揭示了胶囊所扮演的关键作用,其形状变化可以有利于形成所选数量的非平衡状态,其中都可以找到Motile和非运动配置。

Multiple emulsions are a class of soft fluid in which small drops are immersed within a larger one and stabilized over long periods of time by a surfactant. We recently showed that, if a monodisperse multiple emulsion is subject to a pressure-driven flow, a wide variety of nonequilibrium steady states emerges at late times, whose dynamics relies on a complex interplay between hydrodynamic interactions and multibody collisions among internal drops. In this work, we use lattice Boltzmann simulations to study the dynamics of polydisperse double emulsions driven by a Poiseuille flow within a microfluidic channel. Our results show that their behavior is critically affected by multiple factors, such as initial position, polydispersity index, and area fraction occupied within the emulsion. While at low area fraction inner drops may exhibit either a periodic rotational motion (at low polydispersity) or arrange into nonmotile configurations (at high polydispersity) located far from each other, at larger values of area fraction they remain in tight contact and move unidirectionally. This decisively conditions their close-range dynamics, quantitatively assessed through a time-efficiency-like factor. Simulations also unveil the key role played by the capsule, whose shape changes can favor the formation of a selected number of nonequilibrium states in which both motile and nonmotile configurations are found.

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