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Onsager's variational principle for the dynamics of a vesicle in a Poiseuille flow

机译:Onsager在Poiseuille流中囊泡动态的变分原理

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We propose a systematic formulation of the migration behaviors of a vesicle in a Poiseuille flow based on Onsager's variational principle, which can be used to determine the most stable steady state. Our model is described by a combination of the phase field theory for the vesicle and the hydrodynamics for the flow field. The dynamics is governed by the bending elastic energy and the dissipation functional, the latter being composed of viscous dissipation of the flow field, dissipation of the bending energy of the vesicle, and the friction between the vesicle and the flow field. We performed a series of simulations on 2-dimensional systems by changing the bending elasticity of the membrane and observed 3 types of steady states, i.e., those with slipper shape, bullet shape, and snaking motion, and a quasi-steady state with zig-zag motion. We show that the transitions among these steady states can be quantitatively explained by evaluating the dissipation functional, which is determined by the competition between the friction on the vesicle surface and the viscous dissipation in the bulk flow. Published by AIP Publishing.
机译:我们提出了基于Onsager的变分原理的Poiseuille流中囊泡的迁移行为的系统制定,该原理可用于确定最稳定的稳态。我们的模型由囊泡的相场理论与流场的流体动力学的组合描述。动态由弯曲弹性能量和耗散功能管辖,后者由流场的粘性耗散组成,囊泡的弯曲能量耗散,以及囊泡和流场之间的摩擦。我们通过改变膜的弯曲弹性并观察到3种稳态,即具有拖鞋形状,子弹形状和迅速运动的人进行了一系列模拟,以及具有Zig-的准稳态。扎格动作。我们表明,可以通过评估耗散功能来定量解释这些稳态之间的过渡,这通过囊泡表面上的摩擦与散装流动的摩擦效果之间的竞争决定。通过AIP发布发布。

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