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A unified lattice Boltzmann model for immiscible and miscible ternary fluids

机译:一种统一的格子Boltzmann模型,用于不混溶和混溶的三元液体

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Based on the phase-field theory, we develop a unified lattice Boltzmann model for ternary flow, in which the miscibility between the three fluid components can be adjusted independently. Based on a modified free energy function, we derive the conservative phase-field equations using the gradient flow method. A generalized continuous surface tension force formulation is deduced by using the virtual work method. The wetting boundary condition is derived based on mass conservation law. The proposed model for ternary fluids is consistent with the binary-fluid models in the absence of one fluid. A lattice Boltzmann (LB) model is developed to solve the phase-field equations and hydrodynamic equations, and this model can deal with problems involving high density and viscosity contrasts. The proposed method is examined through several test cases. A layered Poiseuille flow and droplet coalescence problems are carried out to validate the present LB model. Several dynamic problems in ternary fluid problems involving a solid are simulated, including the wetting of two droplets on a circular cylinder and impacting of a multiphase droplet on a fixed particle. Finally, we apply the model to a three-dimensional multi-bubbles rising problem to access its numerical accuracy and stability. (C) 2020 Elsevier Ltd. All rights reserved.
机译:基于相场理论,我们开发了一种用于三元流的统一格子Boltzmann模型,其中可以独立地调节三个流体部件之间的混合物。基于改进的自由能功能,我们使用梯度流动方法导出保守的相位场方程。通过使用虚拟工作方法推断出广泛的连续表面张力制剂。基于大规模保护法导出润湿边界条件。所提出的三元流体模型与在没有一个流体的情况下与二元流体模型一致。开发了晶格Boltzmann(LB)模型以解决相位场方程和流体动力学方程,并且该模型可以应对涉及高密度和粘度对比的问题。通过几种测试用例检查所提出的方法。进行分层的Poiseuille流量和液滴聚结问题以验证当前的LB模型。模拟涉及固体的三元流体问题中的几种动态问题,包括在圆柱上的两个液滴的润湿和对固定颗粒上的多相液滴的影响。最后,我们将模型应用于三维多气体上升问题以访问其数值准确性和稳定性。 (c)2020 elestvier有限公司保留所有权利。

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