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On the role of initial velocities in pair dispersion in a microfluidic chaotic flow

机译:关于初始速度在微流混沌流中对扩散中的作用

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摘要

Chaotic flows drive mixing and efficient transport in fluids, as well as the associated beautiful complex patterns familiar to us from our every day life experience. Generating such flows at small scales where viscosity takes over is highly challenging from both the theoretical and engineering perspectives. This can be overcome by introducing a minuscule amount of long flexible polymers, resulting in a chaotic flow dubbed ‘elastic turbulence’. At the basis of the theoretical frameworks for its study lie the assumptions of a spatially smooth and random-in-time velocity field. Previous measurements of elastic turbulence have been limited to two-dimensions. Using a novel three-dimensional particle tracking method, we conduct a microfluidic experiment, allowing us to explore elastic turbulence from the perspective of particles moving with the flow. Our findings show that the smoothness assumption breaks already at scales smaller than a tenth of the system size. Moreover, we provide conclusive experimental evidence that ‘ballistic’ separation prevails in the dynamics of pairs of tracers over long times and distances, exhibiting a memory of the initial separation velocities. The ballistic dispersion is universal, yet it has been overlooked so far in the context of small scales chaotic flows.
机译:混沌流推动流体中的混合和有效传输,以及我们日常生活中熟悉的相关美丽复杂模式。从理论和工程的角度来看,要在粘度接替的小规模范围内生成此类流量都极具挑战性。可以通过引入少量的长形柔性聚合物来克服这一问题,从而导致被称为“弹性湍流”的混沌流动。在其研究的理论框架的基础上,假设了空间上平滑且随时间变化的速度场。先前对弹性湍流的测量仅限于二维。使用新颖的三维粒子跟踪方法,我们进行了微流体实验,使我们能够从粒子随流移动的角度来探索弹性湍流。我们的发现表明,平滑度假设已经以小于系统大小的十分之一的比例被破坏。此外,我们提供了确凿的实验证据,表明“弹道”式分离在长时间和远距离的成对示踪剂动力学中普遍存在,表现出对初始分离速度的记忆。弹道扩散是普遍的,但到目前为止,在小规模混沌流动的情况下,它一直被忽略。

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