用扩散界面浸没边界法模拟双分辨率笛卡尔网格上的运动接触线流动

IF 3.4 3区 工程技术 Q1 MECHANICS 水动力学研究与进展:英文版 Pub Date : 2017-10-01 DOI:10.1016/S1001-6058(16)60788-6
Hao-ran Liu (刘浩然), Han Li (李晗), Hang Ding (丁航)
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引用次数: 4

摘要

本文采用扩散界面浸没边界(DIIB)方法研究了双分辨率网格上弯曲固体壁面上具有移动接触线的流动。采用粗网格对流动进行求解,细网格对界面进行求解的双分辨率网格在模拟多相流时显著提高了计算效率。另一方面,DIIB方法能够在笛卡尔网格上解析弯曲基底上的动态润湿,但通常需要在移动接触线附近的高分辨率网格来解析局部流动。在本研究中,我们将DIIB方法与双分辨率网格相结合,以可承受的成本提高弯曲固体壁面上具有移动接触线的流动的界面分辨率。通过液滴扩散研究验证了移动接触线的动力学行为,数值结果表明,有效滑移长度λn可以近似为1.9Cn,其中Cn是扩散界面厚度的无因次度量。我们还将该方法应用于凸基板上的跌落冲击,双分辨率网格上的结果与单分辨率网格上的结果一致。结果表明,在双分辨率网格上使用DIIB方法进行轴对称模拟,计算时间比单分辨率网格节省近60%。
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Simulation of flows with moving contact lines on a dual-resolution Cartesian grid using a diffuse-interface immersed-boundary method

In this paper, we investigate flows with moving contact lines on curved solid walls on a dual-resolution grid using a diffuse-interface immersed-boundary (DIIB) method. The dual-resolution grid, on which the flows are solved on a coarse mesh while the interface is resolved on a fine mesh, was shown to significantly improve the computational efficiency when simulating multiphase flows. On the other hand, the DIIB method is able to resolve dynamic wetting on curved substrates on a Cartesian grid, but it usually requires a mesh of high resolution in the vicinity of a moving contact line to resolve the local flow. In the present study, we couple the DIIB method with the dual-resolution grid, to improve the interface resolution for flows with moving contact lines on curved solid walls at an affordable cost. The dynamic behavior of moving contact lines is validated by studying drop spreading, and the numerical results suggest that the effective slip length λn can be approximated by 1.9Cn, where Cn is a dimensionless measure of the thickness of the diffuse interface. We also apply the method to drop impact onto a convex substrate, and the results on the dual-resolution grid are in good agreement with those on a single-resolution grid. It shows that the axisymmetric simulations using the DIIB method on the dual-resolution grid saves nearly 60% of the computational time compared with that on a single-resolution grid.

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来源期刊
CiteScore
5.90
自引率
0.00%
发文量
1240
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