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The Tethered Infinitesimal Tori and Spheres Algorithm: A Versatile Calculator for Axisymmetric Problems in Equilibrium Membrane Mechanics

机译:束缚的无穷小圆环和球体算法:平衡膜力学中轴对称问题的多功能计算器

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摘要

Constrained minimization of energy functionals is a central part, and usually the difficult part, of solving problems in the equilibrium mechanics of biological and biomimetic membranes. The inherent difficulties of the conventional variational-calculus approach prevents the numerical calculation involved from being made routine in the analyses of experimental results. We have developed a simulated annealing-based computational technique for routinizing the task of constrained minimization of energy functionals governing whole, or small patches of whole, fluid membranes with axisymmetry, spherical topology, and no domains of inhomogeneity. In this article, we describe the essential principles of the technique and apply it to five examples to demonstrate its versatility. It gives membrane shapes that are automatically stable to axisymmetric perturbations. Presently, it can account for constraints on 1), the membrane area or the effective membrane tension; 2), the enclosed volume or the effective pressure difference across the membrane thickness; and 3), the axial end-to-end distance or the applied axial point force.
机译:限制能量功能的最小化是解决生物膜和仿生膜平衡力学问题的核心部分,通常是困难的部分。常规变分演算方法的固有困难阻止了在实验结果分析中使涉及的数值计算成为常规方法。我们已经开发了一种基于模拟退火的计算技术,用于常规化控制以轴对称,球形拓扑结构且没有非均质性域控制整个或小片整个流体膜的能量功能的受约束的最小化任务。在本文中,我们描述了该技术的基本原理,并将其应用于五个示例以证明其多功能性。它提供的膜形状可自动稳定以抵抗轴对称扰动。目前,它可以解决以下问题:1),膜面积或有效膜张力; 2),封闭体积或整个膜厚度的有效压差;和3),轴向端到端距离或施加的轴向力。

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