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Emergent collective dynamics of bottom-heavy squirmers under gravity

机译:重力下底重伤口的紧急集体动态

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We present the results of hydrodynamic simulations using the method of multi-particle collision dynamics for a system of squirmer microswimmers moving under the influence of gravity at low Reynolds numbers. In addition, the squirmers are bottom-heavy so that they experience a torque which aligns them along the vertical. The squirmers interact hydrodynamically by the flow fields of a stokeslet and rotlet, which are initiated by the acting gravitational force and torque, respectively, and by their own flow fields. By varying the ratio of swimming to bulk sedimentation velocity and the torque, we determine state diagrams for the emergent collective dynamics of neutral squirmers as well as strong pushers and pullers. For low swimming velocity and torque we observe conventional sedimentation, while the sedimentation profile becomes inverted when their values are increased. For neutral squirmers we discover convective rolls of circulating squirmers between both sedimentation states, which sit at the bottom of the system and are fed by plumes made of collectively sinking squirmers. At larger torques porous clusters occur that spawn single squirmers. The two latter states can also occur transiently starting from a uniform squirmer distribution and then disappear in the long-time limit. For strong pushers and pullers only weak plume formation is observed.
机译:我们使用多颗粒碰撞动力学方法介绍了水下微粒碰撞动力学的方法,用于在低雷诺数下重力的影响下移动。此外,DUMIRMERS是底部重的,因此它们经历了沿垂直将它们对准的扭矩。杀伤器通过铲斗和圆形的流场相互作用,其分别由作用重力和扭矩和由它们的自身流场发起。通过改变游泳与散装沉降速度和扭矩的比率,我们确定中性杀伤的紧急集体动态的状态图以及强大的推动器和拉拔器。对于低游泳速度和扭矩,我们观察常规沉降,而当它们的值增加时,沉降轮廓变倒。对于中立杀伤,我们发现两个沉降状态之间的循环蠕动的对流卷,该沉降状态坐在系统的底部,并被羽毛喂食,由集体下沉的肮脏。在较大的扭矩下,发生多孔簇,使得单一的蠕动产生。两个后一种状态也可能从均匀的D断点分布开始瞬时发生,然后在长期限制中消失。对于强大的推动者,拉拔器只观察到弱羽毛形成。

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