CFD-DEM建模:微通道中收缩的三重态粒子堵塞

Mathias Dauphin, Marco Trofa, P. Maffettone
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引用次数: 3

摘要

堵塞是化学工程领域的一个重要问题,特别是涉及微反应器等微流体技术。这种现象是由于通道横截面的完全堵塞而使受限几何形状的流动中断。由于实验昂贵且难以实现,数学建模已被越来越多地使用。本文采用CFD-DEM(计算流体力学与离散元法相结合)数值方法,在考虑三重态颗粒悬浮和恒压降的情况下,模拟了微通道突然收缩时的堵塞情况。研究了颗粒体积分数、黏聚能密度和压降对流速的影响。对微通道中三联体的取向进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CFD-DEM Modelling: Clogging of Triplet Particles in a Microchannel With a Constriction
Clogging represents an important issue in the field of chemical engineering, particularly concerning microfluidic technologies such as microreactors. This phenomenon consists in the the interruption of the flow in confined geometries due to the complete blockage of the channel cross-section. Since experiments can be expensive and difficult to implement, mathematical modelling has become more and more used. In this work, the numerical method called CFD-DEM (combining Computational Fluid Dynamics and Discrete Element Method) is employed to simulate clogging in a microchannel with sudden contraction, considering a suspension of triplet particles and constant pressure drop. The influence of particle volume fraction, cohesion energy density, and pressure drop on the flow rate is investigated. A study concerning the orientation of the triplets in the microchannel is also carried out.
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