Department of Physics and Soft Matter Center, Ochanomizu University, Japan.
Adv Colloid Interface Sci. 2018 May;255:64-75. doi: 10.1016/j.cis.2017.07.021. Epub 2017 Jul 22.
In this review article, we discuss recent studies on drops and bubbles in Hele-Shaw cells, focusing on how scaling laws exhibit crossovers from the three-dimensional counterparts and focusing on topics in which viscosity plays an important role. By virtue of progresses in analytical theory and high-speed imaging, dynamics of drops and bubbles have actively been studied with the aid of scaling arguments. However, compared with three-dimensional problems, studies on the corresponding problems in Hele-Shaw cells are still limited. This review demonstrates that the effect of confinement in the Hele-Shaw cell introduces new physics allowing different scaling regimes to appear. For this purpose, we discuss various examples that are potentially important for industrial applications handling drops and bubbles in confined spaces by showing agreement between experiments and scaling theories. As a result, this review provides a collection of problems in hydrodynamics that may be analytically solved or that may be worth studying numerically in the near future.
在这篇综述文章中,我们讨论了最近关于 Hele-Shaw 细胞中的液滴和气泡的研究,重点讨论了标度律如何表现出与三维对应物的交叉,并关注了粘度起重要作用的课题。由于分析理论和高速成像方面的进展,借助于标度分析,液滴和气泡的动力学已经得到了积极的研究。然而,与三维问题相比,在 Hele-Shaw 细胞中相应问题的研究仍然有限。本综述表明,Hele-Shaw 细胞中的限制效应引入了新的物理现象,从而出现了不同的标度律。为此,我们讨论了各种潜在的重要实例,这些实例通过展示实验和标度理论之间的一致性,对处理受限空间中液滴和气泡的工业应用具有重要意义。因此,本综述提供了一系列可能可以通过解析方法解决的流体动力学问题,或者可能值得在不久的将来进行数值研究。