期刊文献+

Comparative study of two lattice Boltzmann multiphase models for simulating wetting phenomena: implementing static contact angles based on the geometric formulation 被引量:1

Comparative study of two lattice Boltzmann multiphase models for simulating wetting phenomena: implementing static contact angles based on the geometric formulation
下载PDF
导出
摘要 Wetting phenomena are widespread in nature and industrial applications. In general, systems concerning wetting phenomena are typical multicomponent/multiphase complex fluid systems. Simulating the behavior of such systems is important to both scientific research and practical applications. It is challenging due to the complexity of the phenomena and difficulties in choosing an appropriate numerical method. To provide some detailed guidelines for selecting a suitable multiphase lattice Boltzmann model, two kinds of lattice Boltzmann multiphase models, the modified S-C model and the H-C-Z model, are used in this paper to investigate the static contact angle on solid surfaces with different wettability combined with the geometric formulation(Ding, H. and Spelt, P.D. M. Wetting condition in diffuse interface simulations of contact line motion. Physical Review E, 75(4), 046708(2007)). The specific characteristics and computational performance of these two lattice Boltzmann method(LBM) multiphase models are analyzed including relationship between surface tension and the control parameters, the achievable range of the static contact angle, the maximum magnitude of the spurious currents(MMSC), and most importantly, the convergence rate of the two models on simulating the static contact angle. The results show that a wide range of static contact angles from wetting to non-wetting can be realized for both models. MMSC mainly depends on the surface tension. With the numerical parameters used in this work, the maximum magnitudes of the spurious currents of the two models are on the same order of magnitude. MMSC of the S-C model is universally larger than that of the H-C-Z model. The convergence rate of the S-C model is much faster than that of the H-C-Z model. The major foci in this work are the frequently-omitted important details in simulating wetting phenomena. Thus, the major findings in this work can provide suggestions for simulating wetting phenomena with LBM multiphase models along with the geometric formulation. Wetting phenomena are widespread in nature and industrial applications. In general, systems concerning wetting phenomena are typical multicomponent/multiphase complex fluid systems. Simulating the behavior of such systems is important to both scientific research and practical applications. It is challenging due to the complexity of the phenomena and difficulties in choosing an appropriate numerical method. To provide some detailed guidelines for selecting a suitable multiphase lattice Boltzmann model, two kinds of lattice Boltzmann multiphase models, the modified S-C model and the H-C-Z model, are used in this paper to investigate the static contact angle on solid surfaces with different wettability combined with the geometric formulation(Ding, H. and Spelt, P.D. M. Wetting condition in diffuse interface simulations of contact line motion. Physical Review E, 75(4), 046708(2007)). The specific characteristics and computational performance of these two lattice Boltzmann method(LBM) multiphase models are analyzed including relationship between surface tension and the control parameters, the achievable range of the static contact angle, the maximum magnitude of the spurious currents(MMSC), and most importantly, the convergence rate of the two models on simulating the static contact angle. The results show that a wide range of static contact angles from wetting to non-wetting can be realized for both models. MMSC mainly depends on the surface tension. With the numerical parameters used in this work, the maximum magnitudes of the spurious currents of the two models are on the same order of magnitude. MMSC of the S-C model is universally larger than that of the H-C-Z model. The convergence rate of the S-C model is much faster than that of the H-C-Z model. The major foci in this work are the frequently-omitted important details in simulating wetting phenomena. Thus, the major findings in this work can provide suggestions for simulating wetting phenomena with LBM multiphase models along with the geometric formulation.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2018年第4期513-528,共16页 应用数学和力学(英文版)
基金 Project supported by the National Natural Science Foundation of China(Nos.50874071 and51704191) the Shanghai Leading Academic Discipline Project(No.S30106) the Key Program of Science and Technology Commission of Shanghai Municipality(No.12160500200) the PetroChina Innovation Foundation(No.2017D-5007-0209)
关键词 lattice Boltzmann method(LBM) wetting phenomenon static contact angle lattice Boltzmann method(LBM) wetting phenomenon static contact angle
  • 相关文献

参考文献2

二级参考文献25

  • 1曹炳阳,陈民,过增元.纳米通道内液体流动的滑移现象[J].物理学报,2006,55(10):5305-5310. 被引量:47
  • 2GUO Jia-hong DAI Shi-qiang.RESEARCH ON STABILITY OF LIQUID FILM ON HOT SOLID SURFACE IMPINGED BY SMALL DROPLETS[J].Journal of Hydrodynamics,2007,19(3):264-271. 被引量:2
  • 3L. S. Kim,H. K. Jeong,M. Y. Ha,K. C. Kim.Numerical simulation of droplet formation in a micro-channel using the lattice Boltzmann method[J]. Journal of Mechanical Science and Technology . 2008 (4)
  • 4HYVALUOMA J,RAISKINMAKI P,JASBERG A.et al.Simulation of liquid penetration in paper. Physical Review . 2006
  • 5Van DAM D.B,LE CLERC C.Experimental study of the impact of an ink-jet printed droplet on a solid substrate. The Physics of Fluids . 2004
  • 6AIDUN C.K,CLAUSEN J.R.Lattice Boltzmann method for complex flows. Annual Review of Fluid Mechanics .
  • 7HUANG Haibo,THORNE D.T.Jr,SCHAAP M.G. et al.Proposed approximation for contact angles in Shan-and-Chen-type multicomponent multiphase lattice Boltzmann models. Physical Review . 2007
  • 8YUAN P,SCHAEFER L.Equations of state in a lattice Boltzmann model. The Physics of Fluids . 2006
  • 9SUKOP M.C.Lattice Boltzmann modeling:an introduction for geoscientists and engineers. . 2006
  • 10QIAN Yue-hong,SUCCI S,ORSZAG S.A.Recent advances in lattice Boltzmann computing. Ann.Rev. comp.Phys . 1995

共引文献17

同被引文献7

引证文献1

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部