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Visualization of polymer relaxation in viscoelastic turbulent micro-channel flow

机译:粘弹性湍流微通道流动中聚合物松弛的可视化

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摘要

In micro-channels, the flow of viscous liquids e.g. water, is laminar due to the low Reynolds number in miniaturized dimensions. An aqueous solution becomes viscoelastic with a minute amount of polymer additives; its flow behavior can become drastically different and turbulent. However, the molecules are typically invisible. Here we have developed a novel visualization technique to examine the extension and relaxation of polymer molecules at high flow velocities in a viscoelastic turbulent flow. Using high speed videography to observe the fluorescein labeled molecules, we show that viscoelastic turbulence is caused by the sporadic, non-uniform release of energy by the polymer molecules. This developed technique allows the examination of a viscoelastic liquid at the molecular level, and demonstrates the inhomogeneity of viscoelastic liquids as a result of molecular aggregation. It paves the way for a deeper understanding of viscoelastic turbulence, and could provide some insights on the high Weissenberg number problem. In addition, the technique may serve as a useful tool for the investigations of polymer drag reduction.
机译:在微通道中,粘性液体的流动例如由于小型化的雷诺数低,所以水是层流的。水溶液在微量的聚合物添加剂的作用下变成粘弹性的。它的流动行为会变得截然不同和动荡。但是,分子通常是不可见的。在这里,我们已经开发出一种新颖的可视化技术,以检查在粘弹性湍流中高流速下聚合物分子的延伸和弛豫。使用高速摄影术观察荧光素标记的分子,我们表明粘弹性湍流是由聚合物分子散发的,不均匀的能量释放引起的。这项发达的技术允许在分子水平上检查粘弹性液体,并证明了由于分子聚集而引起的粘弹性液体的不均匀性。它为更深入地了解粘弹性湍流铺平了道路,并且可以为魏森伯格数高的问题提供一些见解。另外,该技术可以用作研究聚合物减阻的有用工具。

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