We consider phase-field models with and without lateral flow for the numerical simulation of lateral phase separation and coarsening in lipid membranes. For the numerical solution of these models, we apply an unfitted finite element method that is flexible in handling complex and possibly evolving shapes in the absence of an explicit surface parametrization. Through several numerical tests, we investigate the effect of the presence of lateral flow on the evolution of phases. In particular, we focus on understanding how variable line tension, viscosity, membrane composition, and surface shape affect the pattern formation. Keywords: Lateral phase separation, surface Cahn-Hilliard equation, lateral flow, surface Navier-Stokes-Cahn-Hilliard system, TraceFEM
翻译:我们考虑的是具有和没有横向流动的相向场模型,以模拟横向阶段分离和脂肪膜粗化的数值模拟。对于这些模型的数值解决方案,我们应用了一种不适于使用的有限元素方法,该方法在没有明显的表面对称化的情况下灵活处理复杂和可能演化的形状。我们通过若干次数字测试,调查横向流动的存在对阶段演变的影响。特别是,我们侧重于了解可变的线条紧张、粘度、膜组成和表面形状如何影响模式形成。关键词:横向阶段分离、表层卡赫-希里亚德方程式、横向流动、表面纳维埃-斯托克斯-卡恩-赫里亚德系统、TraceFEM。