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首页> 外文期刊>AIChE Journal >Helical Flows and Chaotic Mixing in Curved Micro Channels
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Helical Flows and Chaotic Mixing in Curved Micro Channels

机译:弯曲微通道中的螺旋流和混沌混合

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摘要

The mixing due to helical flows in curved micro channels is investigated.A new chaotic mixing mechanism is presented relying on alternately switching between different flow patterns exhibiting four Dean vortices.Flow patterns and interfacial stretching factors are numerically computed for various Dean numbers.For experimental studies a prototype of a chaotic mixer with curved channels was fabricated.The experimental evaluation of the mixing performance corroborates the numerical prediction:the mixing performance found for Dean numbers above 140 is qualitatively different from that at lower Dean numbers; the periodic switching between different vortex patterns leads to efficient mixing,manifesting itself in an exponential growth of interfacial area.In addition to the studies on mixing,residence-time distributions in the mixing channel are computed numerically.These investigations indicate that due to mass-transfer enhancement originating from the transversal redistribution of matter in the chaotic flow,hydrodynamic dispersion is substantially reduced relative to a straight channel.
机译:研究了弯曲微通道中螺旋流动引起的混合,提出了一种新的混沌混合机制,该机制依赖于表现出四个Dean涡旋的不同流动模式之间的交替切换,并计算了各种Dean数的流动模式和界面拉伸因子。混合性能的实验评估证实了数值预测:在140以上的Dean数下发现的混合性能与在较低Dean数下的混合性能有质的区别。不同的涡旋模式之间的周期性切换导致有效的混合,体现了界面面积的指数增长。除了对混合的研究,还对混合通道中的停留时间分布进行了数值计算。这些研究表明,由于质量-由于物质在混沌流中的横向重新分布而引起的传输增强,相对于直线通道,流体动力分散性大大降低。

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