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Spiral microchannel with rectangular and trapezoidal cross-sections for size based particle separation

机译:具有矩形和梯形横截面的螺旋微通道,用于基于尺寸的粒子分离

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The paper reports a new method for three-dimensional observation of the location of focused particle streams along both the depth and width of the channel cross-section in spiral inertial microfluidic systems. The results confirm that particles are focused near the top and bottom walls of the microchannel cross-section, revealing clear insights on the focusing and separation mechanism. Based on this detailed understanding of the force balance, we introduce a novel spiral microchannel with a trapezoidal cross-section that generates stronger Dean vortices at the outer half of the channel. Experiments show that particles focusing in such device are sensitive to particle size and flow rate, and exhibits a sharp transition from the inner half to the outer half equilibrium positions at a size-dependent critical flow rate. As particle equilibration positions are well segregated based on different focusing mechanisms, a higher separation resolution is achieved over conventional spiral microchannels with rectangular cross-section.
机译:本文报告了一种新方法,用于沿螺旋惯性微流体系统中通道横截面的深度和宽度的聚焦粒子流的位置的三维观察。结果证实,颗粒聚焦在微通道横截面的顶部和底壁附近,揭示了对聚焦和分离机构的清晰见解。基于对力量平衡的详细了解,我们介绍了一种新颖的螺旋微通道,梯形横截面,在通道的外部产生更强的Dean漩涡。实验表明,聚焦在这种装置中的颗粒对粒度和流速敏感,并且以尺寸依赖性的临界流速表现出从内部到外半平衡位置的急剧转变。由于基于不同的聚焦机制,颗粒平衡位置很好地隔离,并且通过矩形横截面的传统螺旋微通道实现更高的分离分辨率。

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