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扭动棒作为细长的微型游泳者:流场和限制。

Squirmer rods as elongated microswimmers: flow fields and confinement.

机构信息

Institut für Theoretische Physik, Technische Universität Berlin, Hardenbergstraße 36, 10623 Berlin, Germany.

出版信息

Soft Matter. 2020 Jul 21;16(27):6400-6412. doi: 10.1039/d0sm00616e. Epub 2020 Jun 25.

Abstract

Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, which determines their individual and collective dynamics. There is still a need to identify what role long-range hydrodynamic interactions play in their fascinating dynamic structure formation. We construct rods of different aspect ratios using several spherical squirmer model swimmers. With the help of the mesoscale simulation method of multi-particle collision dynamics we analyze the flow fields of these squirmer rods both in a bulk fluid and in Hele-Shaw geometries of different slab widths. Based on the hydrodynamic multipole expansion either for bulk or confinement between two parallel plates, we categorize the different multipole contributions of neutral as well as pusher-type squirmer rods. We demonstrate how confinement alters the radial decay of the flow fields for a given force or source multipole moment compared to the bulk fluid.

摘要

微游泳者或活性元件,如细菌和活性纤维,具有细长的形状,这决定了它们的个体和集体动力学。仍然需要确定长程水动力相互作用在它们迷人的动态结构形成中扮演什么角色。我们使用几个球形微扰器模型游泳者来构建不同纵横比的棒。借助多粒子碰撞动力学的介观模拟方法,我们分析了这些微扰器棒在主体流体中和不同板宽的海勒-肖瓦几何中的流场。基于主体或两平行板之间约束的流体动力多极展开,我们对中性和推进器型微扰器棒的不同多极贡献进行分类。我们展示了与主体流体相比,约束如何改变给定力或源多极矩的流场的径向衰减。

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