Finite element simulations of thin films flowing down planes or cylinders

IF 0.6 4区 工程技术 Q4 MECHANICS
Chicheng Ma, Wei Wang, Mingyue Shao, Zonghe Guo
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引用次数: 1

Abstract

This paper considers contact line dynamics for liquid films flowing down planes or cylinders. Finite element modelling are introduced based on the open-source finite element software Freefem++. Using the reduced model of thin liquid films, the weak form of the partial differential equations are derived for finite element simulations. Both two-dimensional flow and three-dimensional flow of thin films are numerically simulated and the surface instability is analysed. The results obtained in this paper show good agreement with the results from the previous investigation. Results show that travelling wave phenomena is found in the time evolution while a unperturbed initial contact line is given. If given a small perturbed initial contact line, pattern of viscous fingers appears. The radius of the cylinder plays an important role in the flow pattern, and the number of fingers is approximately linearly with the radius of the cylinder. The proposed method and calculation code are useful for gaining better insight into the thin liquid film problems.
薄膜沿平面或圆柱体流动的有限元模拟
本文研究了沿平面或圆柱体流动的液膜的接触线动力学。介绍了基于开源有限元软件Freefem++的有限元建模方法。利用薄膜的简化模型,导出了有限元模拟偏微分方程的弱形式。对薄膜的二维流动和三维流动进行了数值模拟,分析了薄膜表面的不稳定性。本文的研究结果与以往的研究结果吻合良好。结果表明,在给定一个无扰动的初始接触线的情况下,在时间演化过程中发现了行波现象。若给定一个小的扰动初始接触线,就会出现粘性指状物的模式。圆柱体的半径在流型中起着重要作用,并且指状物的数量与圆柱体的半径近似线性。所提出的方法和计算代码有助于更好地了解薄液膜问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.50
自引率
14.30%
发文量
33
审稿时长
7.5 months
期刊介绍: CFD is now considered an indispensable analysis/design tool in an ever-increasing range of industrial applications. Practical flow problems are often so complex that a high level of ingenuity is required. Thus, besides the development work in CFD, innovative CFD applications are also encouraged. PCFD''s ultimate goal is to provide a common platform for model/software developers and users by balanced international/interdisciplinary contributions, disseminating information relating to development/refinement of mathematical and numerical models, software tools and their innovative applications in CFD. Topics covered include: -Turbulence- Two-phase flows- Heat transfer- Chemical reactions and combustion- Acoustics- Unsteady flows- Free-surfaces- Fluid-solid interaction- Navier-Stokes solution techniques for incompressible and compressible flows- Discretisation methods and schemes- Convergence acceleration procedures- Grid generation and adaptation techniques- Mesh-free methods- Distributed computing- Other relevant topics
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