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具有多粒子碰撞动力学的惯性微流体技术。

Inertial microfluidics with multi-particle collision dynamics.

作者信息

Prohm C, Gierlak M, Stark H

机构信息

Institute of Theoretical Physics, Technische Universität Berlin, Berlin, Germany.

出版信息

Eur Phys J E Soft Matter. 2012 Aug;35(8):80. doi: 10.1140/epje/i2012-12080-3. Epub 2012 Aug 30.

Abstract

Using the method of multi-particle collision dynamics (MPCD), we investigate inertial focussing in microfluidic channels that gives rise to the Segré-Silberberg effect. At intermediate Reynolds numbers, we model the motion of a spherical colloid in a circular microchannel under pressure-driven flow. We determine the radial distribution function and show how its width and the location of its maximum are strongly influenced by the colloid size and the Reynolds number of the Poiseuille flow. We demonstrate that MPCD is well suited for calculating mean values for the lift force acting on the colloid in the cross-sectional plane and for its mean axial velocity. We introduce a Langevin equation for the cross-sectional motion whose steady state is the Boltzmann distribution that contains the integrated lift force as potential energy. It perfectly coincides with the simulated radial distribution function.

摘要

我们使用多粒子碰撞动力学(MPCD)方法,研究了微流体通道中产生塞格雷 - 西尔伯格效应的惯性聚焦现象。在中等雷诺数下,我们对压力驱动流作用下圆形微通道中球形胶体的运动进行了建模。我们确定了径向分布函数,并展示了其宽度和最大值位置如何受到胶体尺寸和泊肃叶流雷诺数的强烈影响。我们证明,MPCD非常适合计算作用在胶体上的升力在横截面平面内的平均值及其平均轴向速度。我们引入了一个用于横截面运动的朗之万方程,其稳态是包含积分升力作为势能的玻尔兹曼分布。它与模拟的径向分布函数完全吻合。

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