Dynamics and sorting of run-and-tumble particles in fluid flows with transport barriers

IF 2.6 Q1 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS Journal of Physics Complexity Pub Date : 2024-07-10 DOI:10.1088/2632-072x/ad5bb2
Rafael Dias Vilela, Alfredo J Grados and Jean-Régis Angilella
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Abstract

We investigate the dynamics of individual run-and-tumble particles in a convective flow which is a prototype of fluid flows with transport barriers. We consider the most prevalent case of swimmers denser than the background fluid. As a result of gravity and the effects of the carrying flow, in the absence of swimming the particles either sediment or remain in a convective cell. When run-and-tumble also takes place, the particles may move to upper convective cells. We derive analytically the probability of uprise. Since that probability in a given fluid flow can vary strongly across species, our findings inspire a purely dynamical mechanism for species extraction in the dilute regime. Numerical simulations support our analytical predictions and demonstrate that a judicious choice of the fluid flow’s parameters can lead to particle sorting with an arbitrary degree of purity.
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有传输障碍的流体流动中翻滚颗粒的动力学和分拣
我们研究了对流中单个奔跑和翻滚粒子的动力学,对流是具有传输障碍的流体流动的原型。我们考虑了最常见的游动粒子密度大于背景流体密度的情况。由于重力和携带流的影响,在没有游动的情况下,颗粒要么沉积,要么停留在对流单元中。当发生奔跑和翻滚时,颗粒可能会移动到上层对流单元。我们通过分析得出上浮概率。由于在给定的流体流动中,不同物种的上浮概率会有很大差异,我们的发现启发了稀释体系中物种萃取的纯动力学机制。数值模拟支持我们的分析预测,并证明对流体流动参数的明智选择可以实现任意纯度的粒子分选。
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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来源期刊
Journal of Physics Complexity
Journal of Physics Complexity Computer Science-Information Systems
CiteScore
4.30
自引率
11.10%
发文量
45
审稿时长
14 weeks
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