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旋转Hele-Shaw流动的扩散界面方法。

Diffuse-interface approach to rotating Hele-Shaw flows.

作者信息

Chen Ching-Yao, Huang Yu-Sheng, Miranda José A

机构信息

Department of Mechanical Engineering, National Chiao Tung University, Hsinchu, Taiwan 30010, Republic of China.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Oct;84(4 Pt 2):046302. doi: 10.1103/PhysRevE.84.046302. Epub 2011 Oct 5.

Abstract

When two fluids of different densities move in a rotating Hele-Shaw cell, the interface between them becomes centrifugally unstable and deforms. Depending on the viscosity contrast of the system, distinct types of complex patterns arise at the fluid-fluid boundary. Deformations can also induce the emergence of interfacial singularities and topological changes such as droplet pinch-off and self-intersection. We present numerical simulations based on a diffuse-interface model for this particular two-phase displacement that capture a variety of pattern-forming behaviors. This is implemented by employing a Boussinesq Hele-Shaw-Cahn-Hilliard approach, considering the whole range of possible values for the viscosity contrast, and by including inertial effects due to the Coriolis force. The role played by these two physical contributions on the development of interface singularities is illustrated and discussed.

摘要

当两种不同密度的流体在旋转的赫勒肖盒中流动时,它们之间的界面会变得离心不稳定并发生变形。根据系统的粘度对比,在流体 - 流体边界会出现不同类型的复杂图案。变形还会引发界面奇点的出现以及拓扑变化,如液滴 pinch - off 和自相交。我们基于弥散界面模型对这种特殊的两相驱替进行了数值模拟,该模拟捕捉了各种图案形成行为。这是通过采用布辛涅斯克 - 赫勒肖 - 卡恩 - 希利尔方法来实现的,考虑了粘度对比的所有可能值范围,并纳入了科里奥利力引起的惯性效应。阐述并讨论了这两种物理因素在界面奇点发展中所起的作用。

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