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Numerical approximations to a new phase field model for two phase flows of complex fluids

机译:复杂流体两相流新相场模型的数值近似

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We derive a new phase field theory for immiscible mixtures of nematic liquid crystals and viscous fluids using the variational principle coupled with the generalized Onsager principle. A novel phase transition mechanism is implemented to couple the nematic liquid crystal phase with the viscous fluid phase to arrive at the dissipative hydrodynamic model for incompressible fluid mixtures. Through a delicate explicit-implicit numerical discretization, we develop a decoupled, linear scheme for a simplified version of the phase field model, as well as a coupled, nonlinear scheme for the full model. Both schemes are shown as unconditionally energy stable with consistent, discrete dissipative energy laws. Several numerical examples are presented to show the effectiveness of the new model and the new numerical schemes developed for it. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们使用变分原理与广义Onsager原理相结合,推导出了向列液晶和粘性流体的不混溶混合物的新相场理论。实现了一种新颖的相变机制,以将向列液晶相与粘性流体相耦合,从而获得不可压缩流体混合物的耗散流体动力学模型。通过精细的显式-隐式数值离散化,我们为相场模型的简化版本开发了一种解耦线性方案,并为整个模型开发了一种耦合非线性方案。两种方案均显示为无条件的能量稳定性,且具有一致的离散耗散能量定律。给出了几个数值示例,以显示新模型和为此开发的新数值方案的有效性。 (C)2016 Elsevier B.V.保留所有权利。

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