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Phase-field-theory-based lattice Boltzmann equation method for N immiscible incompressible fluids

机译:基于基于基于基于的N个不混溶的不可压缩液的晶格Boltzmann公式方法

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From the phase field theory, we develop a lattice Boltzmann equation (LBE) method for N (N ≥ 2) immiscible incompressible fluids, and the Cahn-Hilliard equation, which could capture the interfaces between different phases, is also solved by LBE for an N-phase system. In this model, the interface force of N immiscible incompressible fluids is incorporated by chemical potential form, and the fluid-fluid surface tensions could be directly calculated and independently tuned. Numerical simulations including two stationary droplets, spreading of a liquid lens with and without gravity and two immiscible liquid lenses, and phase separation are conducted to validate the present LBE, and numerical results show that the predictions by LBE agree well with the analytical solutions and other numerical results.
机译:从相位场理论,我们开发了N(n≥2)不混溶的不可压缩流体的晶格Boltzmann等式(LBE)方法,并且Cahn-Hilliard方程,可以通过LBE为一个捕获不同阶段之间的界面。 n相系统。 在该模型中,通过化学潜在形式并入不可挤压的不可压缩流体的界面力,并且可以直接计算流体流体表面张力并独立调谐。 在包括两个固定液滴的数值模拟,具有和没有重力的液体透镜和两个不混溶的液体透镜,以及相分离以验证本发明的LBE,数值结果表明LBE的预测与分析解决方案相同吻合良好 数值结果。

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