4.2 Article

Lattice Boltzmann study of slip flow over structured surface with transverse slots

期刊

FLUID DYNAMICS RESEARCH
卷 50, 期 2, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1873-7005/aaa213

关键词

micro-structure; superhydrophobic surface; lattice Boltzmann method; Shan-Chen model

资金

  1. National Natural Science Foundation of China [51475179, 51679099]
  2. Fundamental Research Funds for the Central 474 Universities [HUST. 2016JCTD207]

向作者/读者索取更多资源

Slip flow over structured superhydrophobic surface with transverse slots is investigated by the lattice Boltzmann method. The Shan-Chen multiphase model is employed to simulate the flow over gas bubbles in the slots. The Carnahan-Starling equation of state is applied to obtain large density ratio. The interface thickness of the multiphase model is discussed. We find that the Cahn number Cn should be smaller than 0.02 when the temperature T = 0.5T(c) to restrict the influence of interface thickness on slip length. Influences of slot fraction on slip length is then studied, and the result is compared with single LB simulation of which the interface is treated as free-slip boundary. The slip length obtained by the multiphase model is a little smaller. After that, the shape of the liquid-gas interface is considered, and simulations with different initial protrusion angles and capillary numbers are performed. Effective slip length as a function of initial protrusion angle is obtained. The result is in qualitative agreement with a previous study and main features are reproduced. Furthermore, the influence of Capillary number Ca is studied. Larger Ca causes larger interface deformation and smaller slip length. But when the interface is concaving into the slot, this influence is less obvious.

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