Resonant alignment of microswimmer trajectories in oscillatory shear flows

A. Hope, O. A. Croze, W. Poon, M. Bees, M. Haw
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引用次数: 9

Abstract

Oscillatory flows are commonly experienced by swimming microorganisms in the environment, industrial applications and rheological investigations. We experimentally characterise the response of the alga {\it Dunaliella salina} to oscillatory shear flows, and report the surprising discovery that algal swimming trajectories orient perpendicular to the flow-shear plane. The ordering has the characteristics of a resonance in the driving parameter space. The behaviour is qualitatively reproduced by a simple model and simulations accounting for helical swimming, providing the mechanism for ordering and criteria for the resonant amplitude and frequency. The implications of this work for active oscillatory rheology and industrial algal processing are discussed.
振荡剪切流中微游泳者轨迹的共振排列
在环境、工业应用和流变学研究中,游动的微生物通常会经历振荡流动。我们通过实验表征了海藻对振荡剪切流的响应,并报告了藻类游泳轨迹垂直于流动剪切面的惊人发现。该排序在驱动参数空间中具有共振特性。通过一个简单的模型和计算螺旋游动的模拟,定性地再现了这种行为,提供了排序机制和共振振幅和频率的准则。讨论了本工作对主动振荡流变学和工业藻类加工的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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