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首页> 外文期刊>Journal of Micromechanics and Microengineering >The lateral migration of neutrally-buoyant spheres transported through square microchannels
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The lateral migration of neutrally-buoyant spheres transported through square microchannels

机译:通过方形微通道传输的中性浮力球的横向迁移

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The lateral migration of neutrally-buoyant particles transported through square microchannels has been experimentally investigated over a Reynolds number range of 0.06 ≤ Re ≤ 58.65 at the ratio of channel hydraulic diameter to particle size, λ ≈ 14. Flow Reynolds numbers are determined by applying a conventional particle-tracking algorithm to small tracer particles, while novel imaging techniques have been proposed for identifying and defining the measurement depth of large test particles. By analyzing the spatial distributions of spherical particles, it is revealed that lateral migration of particles markedly occurs even at very low Re, which is induced by the high shear rate due to the small-scale effect. The particle equilibrium position is obtained as a function of Re, and the critical Re at which the particle equilibrium position starts to increase is found in the range 20 ≤ Re ≤ 30. The outermost edge of the particle cluster is also in good agreement with previously available data, which provides a good quantitative basis for designing microfluidic devices that are to be used for plasma separation from whole blood.
机译:已经通过实验研究了在通道水力直径与粒径λ≈14之比的雷诺数范围0.06≤Re≤58.65上通过方形微通道传输的中性浮力颗粒的侧向迁移。传统的粒子跟踪算法可以跟踪小粒子,而提出了新颖的成像技术来识别和定义大测试粒子的测量深度。通过分析球形颗粒的空间分布,发现即使在非常低的Re下,颗粒的横向迁移也会明显发生,这是由于小尺度效应导致的高剪切速率所致。获得的颗粒平衡位置是Re的函数,并且发现颗粒平衡位置开始增加的临界Re在20≤Re≤30的范围内。颗粒簇的最外边缘也与以前的一致现有数据,这为设计用于从全血中分离血浆的微流控设备提供了良好的定量基础。

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