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颗粒形状对微流域中沉降和分选行为的影响。

Particle Shape Influences Settling and Sorting Behavior in Microfluidic Domains.

机构信息

Mechanical Engineering Division, Southwest Research Institute, San Antonio, TX, 78238, USA.

Istituto Applicazioni del Calcolo, via dei taurini 19, 00185, Roma, Italy.

出版信息

Sci Rep. 2018 Jun 5;8(1):8583. doi: 10.1038/s41598-018-26786-7.

Abstract

We present a new numerical model to simulate settling trajectories of discretized individual or a mixture of particles of different geometrical shapes in a quiescent fluid and their flow trajectories in a flowing fluid. Simulations unveiled diverse particle settling trajectories as a function of their geometrical shape and density. The effects of the surface concavity of a boomerang particle and aspect ratio of a rectangular particle on the periodicity and amplitude of oscillations in their settling trajectories were numerically captured. Use of surrogate circular particles for settling or flowing of a mixture of non-circular particles were shown to miscalculate particle velocities by a factor of 0.9-2.2 and inaccurately determine the particles' trajectories. In a microfluidic chamber with particles of different shapes and sizes, simulations showed that steady vortices do not necessarily always control particle entrapments, nor do larger particles get selectively and consistently entrapped in steady vortices. Strikingly, a change in the shape of large particles from circular to elliptical resulted in stronger entrapments of smaller circular particles, but enhanced outflows of larger particles, which could be an alternative microfluidics-based method for sorting and separation of particles of different sizes and shapes.

摘要

我们提出了一种新的数值模型,用于模拟不同几何形状的离散个体或混合物颗粒在静止流体中的沉降轨迹及其在流动流体中的流动轨迹。模拟结果揭示了颗粒沉降轨迹的多样性,这取决于它们的几何形状和密度。数值捕捉了飞旋镖颗粒表面凹度和矩形颗粒纵横比对其沉降轨迹中振荡的周期性和幅度的影响。使用替代的圆形颗粒来模拟非圆形颗粒混合物的沉降或流动,会导致颗粒速度计算错误,误差因子为 0.9-2.2,并且不准确地确定颗粒的轨迹。在具有不同形状和大小颗粒的微流控室内,模拟结果表明,稳定的涡旋不一定总是控制颗粒的捕获,也不一定总是将较大的颗粒选择性地和一致地捕获在稳定的涡旋中。引人注目的是,大颗粒形状从圆形变为椭圆形会导致较小的圆形颗粒更强的捕获,但会增强较大颗粒的流出,这可能是一种基于微流控的替代方法,用于对不同大小和形状的颗粒进行分类和分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7db6/5988840/97863769098e/41598_2018_26786_Fig1_HTML.jpg

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