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Influence of bending resistance on the dynamics of a spherical capsule in shear flow

机译:抗弯强度对剪切流中球形囊动力学的影响

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The objective of the paper is to study the effect of wall bending resistance on the motion of an initially spherical capsule freely suspended in shear flow. We consider a capsule with a given thickness made of a three-dimensional homogeneous elastic material. A numerical method is used to model the fluid-structure interactions coupling a boundary integral method for the fluids with a shell finite element method for the capsule envelope. For a given wall material, the capsule deformability strongly decreases when the wall bending resistance increases. But, if one expresses the same results as a function of the two-dimensional mechanical properties of the mid-surface, which is how the capsule wall is modeled in the thin-shell model, the capsule deformed shape is identical to the one predicted for a capsule devoid of bending resistance. The bending rigidity is found to have a negligible influence on the overall deformation of an initially spherical capsule, which therefore depends only on the elastic stretching of the mid-surface. Still, the bending resistance of the wall must be accounted for to model the buckling phenomenon, which is observed locally at low flow strength. We show that the wrinkle wavelength is only a function of the wall bending resistance and provide the correlation law. Such results can then be used to infer values of the bending modulus and wall thickness from experiments on spherical capsules in simple shear flow. (C) 2015 AIP Publishing LLC.
机译:本文的目的是研究壁弯曲阻力对自由悬浮在剪切流中的初始球形胶囊运动的影响。我们考虑由三维均质弹性材料制成的,具有给定厚度的胶囊。使用数值方法对流体-结构相互作用进行建模,该方法将流体的边界积分方法与胶囊包壳的壳有限元方法结合起来。对于给定的壁材料,当壁抗弯性增加时,胶囊的可变形性大大降低。但是,如果根据中表面的二维机械特性来表达相同的结果(这是在薄壳模型中对胶囊壁进行建模的方式),则胶囊变形的形状与预测的相同。没有弯曲阻力的胶囊。发现弯曲刚度对初始球形囊的总体变形的影响可忽略不计,因此其仅取决于中间表面的弹性拉伸。尽管如此,还必须考虑壁的抗弯强度以模拟屈曲现象,该现象在低流动强度下局部观察到。我们表明,皱纹波长仅是壁抗弯曲性的函数,并提供了相关规律。然后可以将这些结果用于从简单剪切流下的球形胶囊实验中推导出弯曲模量和壁厚的值。 (C)2015 AIP Publishing LLC。

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