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Directed motion of spheres induced by unbiased driving forces in viscous fluids beyond the Stokes' law regime

机译:在超出斯托克斯法律制度之外的粘性流体中,由非偏见驱动力引起的球体的定向运动

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The emergence of directed motion is investigated in a system consisting of a sphere immersed in a viscous fluid and subjected to time-periodic forces of zero average. The directed motion arises from the combined action of a nonlinear drag force and the applied driving forces, in the absence of any periodic substrate potential. Necessary conditions for the existence of such directed motion are obtained and an analytical expression for the average terminal velocity is derived within the adiabatic approximation. Special attention is paid to the case of two mutually perpendicular forces with sinusoidal time dependence, one with twice the period of the other. It is shown that, although neither of these two forces induces directed motion when acting separately, when added together, the resultant force generates directed motion along the direction of the forcewith the shortest period. The dependence of the average terminal velocity on the system parameters is analyzed numerically and compared with that obtained using the adiabatic approximation. Among other results, it is found that, for appropriate parameter values, the direction of the average terminal velocity can be reversed by varying the forcing strength. Furthermore, certain aspects of the observed phenomenology are explained by means of symmetry arguments.
机译:在由浸入粘性流体中的球体组成的系统中研究了定向运动的出现,并经受零平均的时间周期力。在没有任何周期性衬底电位的情况下,从非线性阻力力和施加的驱动力的组合动作产生的定向运动。获得存在这种定向运动的必要条件,并且在绝热近似内导出平均终端速度的分析表达。特别注意两种相互垂直力的情况,具有正弦时间依赖性,一个是另一个时期的两倍。结果表明,尽管在单独行动时,但这两个力都不会引起定向运动,但是当添加在一起时,所得到的力沿着最短时段的力的方向产生定向运动。在数值上分析平均终端速度对系统参数上的依赖性,并与使用绝热近似获得的比较。在其他结果之外,发现,对于适当的参数值,可以通过改变迫使强度来反转平均终端速度的方向。此外,通过对称参数解释观察到的现象学的某些方面。

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