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Diffuse interface models of locally inextensible vesicles in a viscous fluid

机译:粘性流体中局部不可扩展囊泡的扩散界面模型

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摘要

We present a new diffuse interface model for the dynamics of inextensible vesicles in a viscous fluid with inertial forces. A new feature of this work is the implementation of the local inextensibility condition in the diffuse interface context. Local inextensibility is enforced by using a local Lagrange multiplier, which provides the necessary tension force at the interface. We introduce a new equation for the local Lagrange multiplier whose solution essentially provides a harmonic extension of the multiplier off the interface while maintaining the local inextensibility constraint near the interface. We also develop a local relaxation scheme that dynamically corrects local stretching/compression errors thereby preventing their accumulation. Asymptotic analysis is presented that shows that our new system converges to a relaxed version of the inextensible sharp interface model. This is also verified numerically. To solve the equations, we use an adaptive finite element method with implicit coupling between the Navier-Stokes and the diffuse interface inextensibility equations. Numerical simulations of a single vesicle in a shear flow at different Reynolds numbers demonstrate that errors in enforcing local inextensibility may accumulate and lead to large differences in the dynamics in the tumbling regime and smaller differences in the inclination angle of vesicles in the tank-treading regime. The local relaxation algorithm is shown to prevent the accumulation of stretching and compression errors very effectively. Simulations of two vesicles in an extensional flow show that local inextensibility plays an important role when vesicles are in close proximity by inhibiting fluid drainage in the near contact region.
机译:我们提出了一种新的扩散界面模型,用于具有惯性力的粘性流体中不可扩展囊泡的动力学。这项工作的新功能是在扩散接口上下文中实现局部不可扩展条件。局部不可扩展性是通过使用局部拉格朗日乘数来实现的,该乘数在界面处提供了必要的拉力。我们为局部拉格朗日乘数引入了一个新方程,该方程的解实质上提供了乘数在界面外的谐波扩展,同时保持了界面附近的局部不可扩展性约束。我们还开发了一种局部松弛方案,该方案可以动态校正局部拉伸/压缩错误,从而防止其累积。渐进分析表明,我们的新系统收敛于不可扩展的锐利接口模型的宽松版本。这也得到了数值验证。为了解决这些方程,我们使用了自适应有限元方法,在Navier-Stokes和扩散界面不可扩展性方程之间进行隐式耦合。单个囊泡在不同雷诺数下的剪切流动的数值模拟表明,强制局部不可扩展性的误差可能会累积并导致翻滚状态下动力的较大差异,而在踩踏状态下囊泡的倾斜角度差异较小。结果表明,局部松弛算法可以非常有效地防止拉伸和压缩误差的累积。在延伸流中的两个囊泡的模拟表明,当囊泡非常接近时,局部不可扩展性通过抑制近接触区域中的流体排出而起着重要作用。

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