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Isogeometric analysis for a phase-field constrained optimization problem of morphological evolution of vesicles in electrical fields

机译:电场内囊泡形态演化的相域约束优化问题的异步分析

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In this paper, we solve a constrained Willmore problem coupled with an electrical field using IsoGeometric Analysis (IGA) to simulate the morphological evolution of vesicles subjected to static electrical fields. The model consist of two phases, the lipid bilayer and the electrolyte. The two-phases problem is modeled using the phase-field method, a subclass of the diffusive interface models. The bending, flexoelectric and dielectric energies of the model are reformulated using the phase-field parameter. A modified Augmented-Lagrangian approach was used to satisfy the constraints while maintaining numerical stability and a relatively large time step. This approach guarantees the satisfaction of the constraints at each time step over the entire temporal domain. The results show the superiority of the isogeometric analysis in solving high-order differential operators without the need for additional intermediate equations to account for classical mesh-based methods limited continuity. On the physical side, the morphological evolution of the vesicles can be simulated accurately using IGA, even when considering the flexoelectric response of the biomembrane, which adds another layer of numerical complexity to the system. The effect of the flexoelectricity, the conductivity ratio and other aspects of the problem are studied through several 3D numerical examples. (C) 2021 Elsevier B.V. All rights reserved.
机译:在本文中,我们解决了使用异构分析(IgA)与电场耦合的受约束的Willmore问题,以模拟经受静态电场的囊泡的形态演化。该模型由两相,脂质双层和电解质组成。使用相位现场方法,扩散界面模型的子类建模两个阶段问题。使用相场参数重新重新重新建立模型的弯曲,柔性和介电能量。用于保持数值稳定性和相对较大的时间步长,用于满足修改的增强拉格朗日方法来满足约束。这种方法保证每次步骤在整个时间域上的约束对约束的满足感。结果表明,在求解高阶差分运算符的情况下,在不需要额外的中间方程的情况下解释基于经典网格的方法有限的连续性的情况。在物理方面,即使在考虑生物膜的柔性响应时,也可以使用IgA精确地模拟囊泡的形态学演化,这将为系统添加另一层数值复杂度的弯曲电响应。通过几个3D数值实施例研究了柔性电性,电导率和问题的其他方面的影响。 (c)2021 Elsevier B.v.保留所有权利。

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