Bischofberger Irmgard, Ramachandran Radha, Nagel Sidney R
The James Franck and Enrico Fermi Institutes and The Department of Physics, The University of Chicago, Chicago, Illinois 60637, USA.
Soft Matter. 2015 Oct 7;11(37):7428-32. doi: 10.1039/c5sm00943j. Epub 2015 Aug 13.
The displacement of a more viscous fluid by a less viscous one in a quasi-two dimensional geometry leads to the formation of complex fingering patterns. This fingering has been characterized by a most unstable wavelength, λc, which depends on the viscosity difference between two immiscible fluids and sets the characteristic width of the fingers. How the finger length grows after the instability occurs is an equally important, but previously overlooked, aspect that characterizes the global features of the patterns. Long after the instability onset, once the fingers are growing in a nearly steady-state regime, there is a stable inner region where the outer fluid is completely displaced. We show that the ratio of the finger length to the radius of this stable region depends only on the viscosity ratio of the fluids and is decoupled from λc.
在准二维几何结构中,低粘性流体驱替高粘性流体时会形成复杂的指进图案。这种指进现象的特征是存在一个最不稳定波长λc,它取决于两种不混溶流体之间的粘度差,并决定了指进条纹的特征宽度。不稳定性发生后指进条纹的长度如何增长,是表征图案整体特征的一个同样重要但此前被忽视的方面。在不稳定性开始很久之后,一旦指进条纹在接近稳态的状态下生长,就会存在一个稳定的内部区域,外部流体在该区域被完全驱替。我们表明,指进条纹长度与这个稳定区域半径的比值仅取决于流体的粘度比,并且与λc无关。