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An experimental and theoretical study of the mixing characteristics of a periodically reoriented irrotational flow

机译:周期性重新定向无旋流混合特性的实验和理论研究

摘要

The minimum-energy method to generate chaotic advection should be to use an irrotational flow. However, irrotational flows have no saddle connections to perturb in order to generate chaotic orbits. To the early work of Jones & Aref (Jones & Aref 1988 Phys. Fluids 31, 469–485 (doi:10.1063/1.866828)) on potential flow chaos, we add periodic reorientation to generate chaotic advection with irrotational experimental flows. Our experimental irrotational flow is a dipole potential flow in a disc-shaped Hele-Shaw cell called the rotated potential mixing flow; it leads to chaotic advection and transport in the disc. We derive an analytical map for the flow. This is a partially open flow, in which parts of the flow remain in the cell forever, and parts of it pass through with residence-time and exit-time distributions that have self-similar features in the control parameter space of the stirring. The theory compares well with the experiment.
机译:产生混沌对流的最小能量方法应该是使用非旋流。但是,无旋流没有与扰动的鞍形连接以产生混沌轨道。对于Jones& amp; amp;的早期工作Aref(Jones& amp; Aref 1988 Phys.Fluids 31,469-485(doi:10.1063 / 1.866828))涉及潜在的流动紊乱,我们添加了周期性的重新定向以产生具有非旋转实验流动的混沌对流。我们的实验非旋流是在圆盘状Hele-Shaw池中的偶极势流,称为旋转势混合流。它导致光盘中的对流和传输混乱。我们得出了流动的分析图。这是部分开放的流,其中部分流永久保留在单元中,并且部分流以停留时间和出口时间分布通过,这些分布在搅拌的控制参数空间中具有自相似的特征。该理论与实验相吻合。

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