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首页> 外文期刊>Analytica chimica acta >Inertial microfluidics: A method for fast prediction of focusing pattern of particles in the cross section of the channel
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Inertial microfluidics: A method for fast prediction of focusing pattern of particles in the cross section of the channel

机译:惯性微流体:一种快速预测通道横截面中粒子聚焦模式的方法

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Inertial microfluidics is utilized as a powerful passive method for particle and cell manipulation, which uses the hydrodynamic forces of the fluid in the channel to focus particles in specific equilibrium positions in the cross section of the channel. To achieve high performance manipulation, knowledge of focusing pattern of particles in the cross section of channel is essential. In this paper, we propose a method to address this important issue. To this end, firstly inertial microfluidics is analyzed in rectangular cross section channels. The results indicate that fluid flow velocity and channel's cross-sectional profiles have great impacts on the forces exerted on particles. Next, these results are utilized to propose a method to predict equilibrium positions in non-rectangular cross section channels through some simple calculations. This method is based on approximating the velocity profile of a non-rectangular cross section channel by utilizing portions of velocity profiles of different rectangular cross section channels. To analyze the method's performance, results obtained from the proposed method are compared with Direct Numerical Simulation (DNS) and experimental studies of seven non-rectangular channels. It is observed that the proposed approach accurately predicts particles trajectories and their equilibrium positions in the cross section of channels. (C) 2019 Elsevier B.V. All rights reserved.
机译:惯性微流体被用作粒子和细胞操作的强大无源方法,其使用通道中的流体中的流体动力力来聚焦在通道的横截面中的特定平衡位置中的粒子。为了实现高性能操作,通道横截面中粒子的聚焦模式的知识至关重要。在本文中,我们提出了一种解决这个重要问题的方法。为此,在矩形横截面通道中分析了第一惯性微流体。结果表明,流体流速和通道的横截面曲线对施加在颗粒上的力产生很大影响。接下来,使用这些结果来提出通过一些简单的计算来预测非矩形横截面通道中的均衡位置的方法。该方法基于利用不同矩形横截面通道的速度分布部分近似非矩形横截面通道的速度分布。为了分析方法的性能,将从所提出的方法获得的结果与直接数值模拟(DNS)进行比较,以及七个非矩形通道的实验研究。观察到所提出的方法准确地预测通道的横截面中的粒子轨迹及其平衡位置。 (c)2019年Elsevier B.V.保留所有权利。

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