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A numerical study on dynamic inertial focusing of microparticles in a confined flow

机译:有限流中微粒动态惯性聚焦的数值研究

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摘要

Inertial microfluidics is regarded as a promising approach to facilitate precise, robust and continuous manipulation of particles through inertial focusing of particles in microchannels. Although there is a need to gain rich insights into the focusing dynamics of particles, it has been hardly studied numerically. In this study, the complex focusing dynamics of particles is simulated numerically for multiparticle suspensions in confined microchannels. To this end, we develop a new method that couples the discrete element method (DEM) with the direct numerical simulation (DNS). This method is referred to as the DEM-DNS method. In order to validate the DEM-DNS method, we then investigate complex dependence of particle behaviour on Reynolds number and channel geometries. With good agreement between the numerical results and existing observations, it is shown for the first time that the DEM-DNS method can simulate the counterintuitive focusing dynamics of particles. This study thus establishes that the DEM-DNS method is a powerful tool to examine the focusing dynamics of particles in inertial microfluidics.
机译:惯性微流体学被认为是通过对微通道中的颗粒进行惯性聚焦来促进对颗粒进行精确,稳健和连续操纵的有前途的方法。尽管有必要对粒子的聚焦动力学获得丰富的见解,但很少对其进行数值研究。在这项研究中,数值模拟了受限微通道中多颗粒悬浮液的颗粒复杂聚焦动力学。为此,我们开发了一种将离散元素方法(DEM)与直接数值模拟(DNS)结合起来的新方法。此方法称为DEM-DNS方法。为了验证DEM-DNS方法,我们然后研究了粒子行为对雷诺数和通道几何形状的复杂依赖性。在数值结果和现有观测值之间取得良好一致性的情况下,首次证明了DEM-DNS方法可以模拟粒子的违反直觉的聚焦动力学。因此,这项研究确定了DEM-DNS方法是检查惯性微流体中粒子聚焦动力学的有力工具。

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