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Anomalous mixing behaviour In rotationally actuated microfluidic devices

机译:旋转驱动微流体装置中的异常混合行为

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We analyse the characteristics of two-fluid mixing in T-shaped microchannels on rotating platforms (Lab-on-a-Compact-Disk framework). Three regimes of mixing were identified based on the distinct flow behaviour in each of these regimes. A diffusion-based mixing regime was obtained for low rotation speeds. A Coriolis force based mixing regime was observed for intermediate rotation speeds, which introduced some nontrivial aspects in the mixing behaviour, which was explained through scaling analysis. At very high rotational speeds, rapid mixing close to the junction was achieved by exploiting flow instabilities (instability based mixing). A good agreement between the theoretical calculations and the experimental observations was obtained.
机译:我们分析了在旋转平台(Lab-on-a-Compact-Disk框架)上的T形微通道中的两种流体混合的特性。基于每种方案中不同的流动行为,确定了三种混合方案。对于低转速,获得了基于扩散的混合方式。在中间转速下观察到基于科里奥利力的混合方式,这在混合行为中引入了一些不平凡的方面,这通过比例分析得到了解释。在非常高的转速下,通过利用流动不稳定性(基于不稳定性的混合)实现了靠近接合处的快速混合。理论计算和实验观察之间取得了良好的一致性。

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