Laboratoire d'Hydrodynamique and Department of Mechanics, École Polytechnique, Centre National de la Recherche Scientifique, 91128 Palaiseau, France.
Proc Natl Acad Sci U S A. 2013 Jan 15;110(3):859-64. doi: 10.1073/pnas.1211706110. Epub 2012 Dec 31.
When you reach with your straw for the final drops of a milkshake, the liquid forms a train of plugs that flow slowly initially because of the high viscosity. They then suddenly rupture and are replaced with a rapid airflow with the characteristic slurping sound. Trains of liquid plugs also are observed in complex geometries, such as porous media during petroleum extraction, in microfluidic two-phase flows, or in flows in the pulmonary airway tree under pathological conditions. The dynamics of rupture events in these geometries play the dominant role in the spatial distribution of the flow and in determining how much of the medium remains occluded. Here we show that the flow of a train of plugs in a straight channel is always unstable to breaking through a cascade of ruptures. Collective effects considerably modify the rupture dynamics of plug trains: Interactions among nearest neighbors take place through the wetting films and slow down the cascade, whereas global interactions, through the total resistance to flow of the train, accelerate the dynamics after each plug rupture. In a branching tree of microchannels, similar cascades occur along paths that connect the input to a particular output. This divides the initial tree into several independent subnetworks, which then evolve independently of one another. The spatiotemporal distribution of the cascades is random, owing to strong sensitivity to the plug divisions at the bifurcations.
当你用吸管去吸最后几滴奶昔时,液体形成了一串塞子,由于高粘度,它们最初会缓慢流动。然后,它们突然破裂,被一股带有特征性吸吮声的快速气流所取代。在复杂的几何形状中,如在石油开采过程中的多孔介质、微流控两相流或在病理条件下的肺气道树中的流动中,也观察到了液体塞子的列车。这些几何形状中破裂事件的动力学在流动的空间分布中起着主导作用,并决定了有多少介质仍然被阻塞。在这里,我们表明,在直通道中,塞子列车的流动总是不稳定的,会发生一连串的破裂。集体效应极大地改变了塞子列车的破裂动力学:最近邻之间的相互作用通过润湿膜发生,并减缓了级联,而全局相互作用则通过塞子列车的总流动阻力加速了每次塞子破裂后的动力学。在微通道的分支树中,类似的级联沿着连接输入到特定输出的路径发生。这将初始树分为几个独立的子网,然后它们彼此独立地演化。由于在分支处对塞子分裂的强烈敏感性,级联的时空分布是随机的。