He Qiang, Li Yongjian, Huang Weifeng, Hu Yang, Wang Yuming
Department of Mechanical Engineering, Tsinghua University, Beijing 10084, China.
Phys Rev E. 2020 Mar;101(3-1):033307. doi: 10.1103/PhysRevE.101.033307.
On the basis of phase-field theory, we develop a lattice Boltzmann model for ternary fluids containing solid. We develop a modified bounce-back method to describe the interactions between the solid and N-phase (N≥2) fluids. We derive a wetting boundary condition for three-phase flows from the point of mass conservation and propose a scheme for implementing the wetting condition on curved boundaries. We develop a diffuse interface method to compute the capillary force acting on the moving solid objects at the ternary fluids-sold contact lines. In addition, this model can deal with problems involving high density and viscosity contrasts. The proposed method is examined through several test cases. We test the modified bounce-back scheme, wetting boundary condition, and capillary force model in three different cases, and the numerical results agree well with the analytical solutions. Finally, we apply the model to two three-dimensional problems to assess its numerical accuracy and stability.
基于相场理论,我们开发了一种用于含固体的三元流体的格子玻尔兹曼模型。我们开发了一种改进的反弹方法来描述固体与N相(N≥2)流体之间的相互作用。我们从质量守恒的角度推导了三相流的润湿边界条件,并提出了一种在弯曲边界上实现润湿条件的方案。我们开发了一种漫射界面方法来计算作用在三元流体-固体接触线上移动固体物体上的毛细力。此外,该模型可以处理涉及高密度和粘度对比的问题。通过几个测试案例对所提出的方法进行了检验。我们在三种不同情况下测试了改进的反弹方案、润湿边界条件和毛细力模型,数值结果与解析解吻合良好。最后,我们将该模型应用于两个三维问题,以评估其数值精度和稳定性。