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Phase-field theory of multicomponent incompressible Cahn-Hilliard liquids

机译:多组分不可压缩卡恩-希拉德液体的相场理论

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摘要

In this paper, a generalization of the Cahn-Hilliard theory of binary liquids is presented for multicomponent incompressible liquid mixtures. First, a thermodynamically consistent convection-diffusion-type dynamics is derived on the basis of the Lagrange multiplier formalism. Next, a generalization of the binary Cahn-Hilliard free-energy functional is presented for an arbitrary number of components, offering the utilization of independent pairwise equilibrium interfacial properties. We show that the equilibrium two-component interfaces minimize the functional, and we demonstrate that the energy penalization for multicomponent states increases strictly monotonously as a function of the number of components being present. We validate the model via equilibrium contact angle calculations in ternary and quaternary (four-component) systems. Simulations addressing liquid-flow-assisted spinodal decomposition in these systems are also presented.
机译:在本文中,对多组分不可压缩液体混合物提出了Cahn-Hilliard二元液体理论的推广。首先,基于拉格朗日乘数形式主义推导了热力学上一致的对流扩散型动力学。接下来,给出了针对任意数量组分的二元Cahn-Hilliard自由能泛函的泛化,从而提供了独立的成对平衡界面性质的利用。我们证明了平衡的两组分界面使功能最小化,并且我们证明了多组分态的能量罚分随存在的组分数严格单调增加。我们通过三元和四元(四组分)系统中的平衡接触角计算来验证模型。还介绍了解决这些系统中液流辅助旋节线分解的模拟。

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