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Density-induced asymmetric pair of Dean vortices and its effects on mass transfer in a curved microchannel with two-layer laminar stream

机译:密度诱导的不对称Dean涡流对及其对具有两层层流的弯曲微通道中传质的影响

摘要

To better understand the mass transfer and provide possible performance improvement methods for the microfluidic devices relying on the two-layer laminar flow, a computational fluid dynamics simulation is performed to investigate the phenomenon of a two-layer laminar stream passing through a curved microchannel. The results show that due to the density difference between the two fluids, asymmetric pair of Dean vortices are formed as the fluids pass through the curve. Due to the inter-stream convection, the denser fluid intrudes into the less-dense one resulting in a Γ sharp layer-interface. Furthermore, the parametric analysis helps identify ways to minimize the inter-stream mass transfer, such as increasing the density ratio, as well as reducing the Re number and aspect ratio. The study concludes that the microchannel curve can be properly designed to obtain a clear interface between two streams to fulfill the basic requirement of microfluidic devices.
机译:为了更好地理解传质并为依赖于两层层流的微流体装置提供可能的性能改进方法,进行了计算流体动力学模拟以研究穿过弯曲微通道的两层层流的现象。结果表明,由于两种流体之间的密度差异,当流体通过曲线时会形成一对不对称的Dean涡流。由于流间对流,较稠密的流体进入密度较低的流体中,从而形成Γ尖锐的层界面。此外,参数分析有助于确定使流间传质最小化的方法,例如增加密度比,以及减少Re数和长宽比。研究得出的结论是,可以适当设计微通道曲线,以在两个流之间获得清晰的界面,从而满足微流体设备的基本要求。

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