首页> 外文期刊>The European physical journal, E. Soft matter >Motion planning and motility maps for flagellar microswimmers
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Motion planning and motility maps for flagellar microswimmers

机译:鞭毛微游泳者的运动计划和运动图

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We study two microswimmers consisting of a spherical rigid head and a passive elastic tail. In the first one the tail is clamped to the head, and the system oscillates under the action of an external torque. In the second one, head and tail are connected by a joint allowing the angle between them to vary periodically, as a result of an oscillating internal torque. Previous studies on these models were restricted to sinusoidal actuations, showing that the swimmers can propel while moving on average along a straight line, in the direction given by the symmetry axis around which beating takes place. We extend these results to motions produced by generic (non-sinusoidal) periodic actuations within the regime of small compliance of the tail. We find that modulation in the velocity of actuation can provide a mechanism to select different directions of motion. With velocity-modulated inputs, the externally actuated swimmer can translate laterally with respect to the symmetry axis of beating, while the internally actuated one is able to move along curved trajectories. The governing equations are analysed with an asymptotic perturbation scheme, providing explicit formulas, whose results are expressed through motility maps. Asymptotic approximations are further validated by numerical simulations.
机译:我们研究了两个微型游泳者,包括球形刚性头和被动弹性尾巴。在第一个中,尾巴夹在头部,系统在外部扭矩的作用下振荡。在第二个中,头部和尾部通过关节连接,由于内部扭矩的振荡,头部和尾部之间的角度会定期变化。以前对这些模型的研究仅限于正弦驱动,这表明游泳者可以平均地沿直线运动,并沿对称轴给出的方向推进,而对称轴围绕其发生跳动。我们将这些结果扩展到在尾巴的小柔度范围内由一般(非正弦)周期性驱动产生的运动。我们发现,驱动速度的调制可以提供一种选择不同运动方向的机制。借助速度调节输入,外动游泳者可以相对于跳动的对称轴横向平移,而内动游泳者则可以沿着弯曲的轨迹移动。用渐近摄动方案分析了控制方程,提供了明确的公式,其结果通过运动图表示。通过数值模拟进一步验证了渐近逼近。

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