Kuhr Jan-Timm, Rühle Felix, Stark Holger
Institut für Theoretische Physik, Technische Universität Berlin, Hardenbergstr. 36, 10623 Berlin, Germany.
Soft Matter. 2019 Jul 17;15(28):5685-5694. doi: 10.1039/c9sm00889f.
We present a hydrodynamic study of a monolayer of squirmer model microswimmers confined to a boundary by strong gravity using the simulation method of multi-particle collision dynamics. The squirmers interact with each other via their self-generated hydrodynamic flow fields and thereby form a variety of fascinating dynamic states when density and squirmer type are varied. Weak pushers, neutral squirmers, and pullers have an upright orientation. With their flow fields they push neighbors away and thereby form a hydrodynamic Wigner fluid at lower densities. Furthermore, states of fluctuating chains and trimers, of kissing, and at large densities a global cluster exist. Finally, pushers at all densities can tilt against the wall normal and their in-plane velocities align to show swarming. It turns into chaotic swarming for strong pushers at high densities. We characterize all these states quantitatively.
我们使用多粒子碰撞动力学模拟方法,对受强重力限制在边界上的单层蠕动者模型微游泳器进行了流体动力学研究。蠕动者通过其自身产生的流体动力流场相互作用,因此当密度和蠕动者类型变化时会形成各种迷人的动态状态。弱推动者、中性蠕动者和拉动者具有直立取向。它们通过流场将邻居推开,从而在较低密度下形成流体动力学维格纳流体。此外,还存在波动链和三聚体状态、亲吻状态,以及在高密度下的全局簇状态。最后,所有密度下的推动者都可以相对于壁法线倾斜,并且它们的面内速度对齐以显示群聚现象。对于高密度下的强推动者,它会变成混沌群聚。我们对所有这些状态进行了定量表征。