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流体动力同步的一般条件。

Generic conditions for hydrodynamic synchronization.

机构信息

Department of Physics, Tohoku University, Sendai, 980-8578, Japan.

出版信息

Phys Rev Lett. 2011 Feb 4;106(5):058104. doi: 10.1103/PhysRevLett.106.058104.

Abstract

Synchronization of actively oscillating organelles such as cilia and flagella facilitates self-propulsion of cells and pumping fluid in low Reynolds number environments. To understand the key mechanism behind synchronization induced by hydrodynamic interaction, we study a model of rigid-body rotors making fixed trajectories of arbitrary shape under driving forces that are arbitrary functions of the phase. For a wide class of geometries, we obtain the necessary and sufficient conditions for synchronization of a pair of rotors. We also find a novel synchronized pattern with an oscillating phase shift. Our results shed light on the role of hydrodynamic interactions in biological systems, and could help in developing efficient mixing and transport strategies in microfluidic devices.

摘要

活跃的细胞器(如纤毛和鞭毛)的同步有助于细胞的自推进和在低雷诺数环境下泵送流体。为了理解由水动力相互作用引起的同步的关键机制,我们研究了一个刚体转子模型,在任意形状的固定轨迹下,驱动力是相位的任意函数。对于广泛的几何形状,我们得到了一对转子同步的必要和充分条件。我们还发现了一种具有振荡相移的新型同步模式。我们的研究结果揭示了水动力相互作用在生物系统中的作用,并可能有助于开发微流控装置中的高效混合和输运策略。

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