论文标题
微涡度波动影响薄流体膜的结构
Micro-vorticity fluctuations affect the structure of thin fluid films
论文作者
论文摘要
复杂流体界面的动态相互作用对在纳米十个尺度上发生的近接触相互作用高度敏感。这种相互作用很难分析,因为它们是自吻的,与不断发展的界面的动态形态以及间质流体膜的流体动力学。在这项工作中,我们表明,在给定幅度阈值之上,近接触相互作用触发了非平凡的微涡流模式,这又影响有效的近接触相互作用,从而导致流体界面处的持续波动波纹。在这种状态下,接近接触的相互作用可能会显着影响乳液构型的宏观布置,例如在软流量的微流体晶体中产生的乳液构型。
The dynamic interaction of complex fluid interfaces is highly sensitive to near-contact interactions occurring at the scale of ten of nanometers. Such interactions are difficult to analyse because they couple self-consistently to the dynamic morphology of the evolving interface, as well as to the hydrodynamics of the interstitial fluid film. In this work, we show that, above a given magnitude threshold, near-contact interactions trigger non-trivial micro-vorticity patterns, which in turn affect the effective near-contact interactions, giving rise to persistent fluctuating ripples at the fluid interface. In such regime, near-contact interactions may significantly affect the macroscopic arrangement of emulsion configurations, such as those arising in soft-flowing microfluidic crystals.