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首页> 外文期刊>The European physical journal, E. Soft matter >Translations and rotations at low Reynolds number: A study of simple model swimmers with finite amplitude strokes
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Translations and rotations at low Reynolds number: A study of simple model swimmers with finite amplitude strokes

机译:雷诺数低时的平移和旋转:有限振幅划水的简单模型游泳者的研究

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摘要

We present a simple dynamical model of self-propeller at low Reynolds number in which selfpropulsion is achieved via rotary elements (rotors). In this model by changing the sense of rotation of the rotors, the self-propeller can switch between a “linear swimming” phase where it swims in a straight line and a “tumbling” phase in which it can change direction in a controllable way via a global rotation of its body. We study the dynamics of this propeller in detail. To do this we provide an analytic framework within which the non-perturbative aspects of the internal dynamics can be treated allowing us to study the swimming process for arbitrary values of the swimmer deformations. Using it, we compute the averages (over a deformation cycle) of a number of characteristic properties of the swimmer such as its self-propulsion velocity, the dissipated power, its efficiency and the fluid flow patterns it generates. We compare these results to the corresponding average quantities for another class of model swimmers, where self-propulsion is achieved via periodic translations. Finally, we provide an explanation of why non-perturbative results can be obtained for these models using the geometrical language of gauge theory.
机译:我们提出了一个低雷诺数的自动螺旋桨动力学模型,其中通过旋转元件(转子)实现了自动推进。在此模型中,通过更改转子的旋转方向,自推进器可以在“直线游泳”阶段和“翻滚”阶段之间进行切换,在“线性游泳”阶段中直线游泳,在“翻滚”阶段中可通过控制方式改变方向它的整体旋转。我们将详细研究这种螺旋桨的动力。为此,我们提供了一个分析框架,可以在其中处理内部动力学的非扰动方面,从而使我们能够研究游泳过程中游泳者变形的任意值。使用它,我们可以计算出游泳者许多特征属性的平均值(在变形周期内),例如其自我推进速度,耗散功率,效率及其产生的流体流动模式。我们将这些结果与另一类模型游泳者的相应平均数量进行比较,通过周期性翻译实现自我推进。最后,我们提供了一个解释,为什么使用规范理论的几何语言可以为这些模型获得非扰动结果。

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