Oscillatory flow improves hydrodynamic ordering of soft suspensions in rectangular channels.

IF 2.9 3区 化学 Q3 CHEMISTRY, PHYSICAL
Soft Matter Pub Date : 2025-06-18 DOI:10.1039/d5sm00422e
Paul C Millett
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引用次数: 0

Abstract

A computational study is presented that examines the hydrodynamic ordering of soft-particle suspensions within rectangular channels undergoing both steady and oscillatory flow. In these conditions, particles assemble into one-dimensional train-like configurations aligned in the flow direction. The results indicate that oscillatory flow facilitates a significant improvement in the ordering process, particularly for the assembly of multiple side-by-side trains within the channel. Several key parameters are systematically varied, including the Wolmersley number (Wo) representing the oscillatory frequency, the capillary number (Ca) representing the particle deformability, and the particle volume fraction (ϕ). It is found that optimal ordering occurs for a particular range of Wo number, and that this range is dependent on Ca. Finally, polydisperse suspensions are also considered, whereby dispersity in the particle size is varied. The simulations reveal that oscillatory flow is more robust (relative to steady flow) for ordering polydisperse suspensions into side-by-side train structures. This study provides an alternative strategy for reliably ordering biological cells, vesicles, droplets, or other deformable particles into train-like configurations without the use of flow-focusing fluidic channel features.

振荡流动改善了矩形通道中软悬浮液的水动力有序性。
本文提出了一项计算研究,研究了在矩形通道内经历稳态和振荡流动的软颗粒悬浮液的水动力顺序。在这些条件下,粒子聚集成沿流动方向排列的一维列状结构。结果表明,振荡流促进了排序过程的显著改善,特别是对于通道内多个并排列车的组装。几个关键参数系统地变化,包括代表振荡频率的沃尔默斯利数(Wo),代表颗粒可变形性的毛细数(Ca)和颗粒体积分数(ϕ)。研究发现,最佳排序发生在特定的Wo数范围内,并且该范围依赖于Ca。最后,还考虑了多分散悬浮液,其中分散性在粒径上是不同的。仿真结果表明,振荡流(相对于稳定流)对于将多分散悬浮液排列成并排的列车结构具有更强的鲁棒性。这项研究提供了一种替代策略,可以可靠地将生物细胞、囊泡、液滴或其他可变形颗粒排列成列车状结构,而无需使用流动聚焦的流体通道特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Soft Matter
Soft Matter 工程技术-材料科学:综合
CiteScore
6.00
自引率
5.90%
发文量
891
审稿时长
1.9 months
期刊介绍: Soft Matter is an international journal published by the Royal Society of Chemistry using Engineering-Materials Science: A Synthesis as its research focus. It publishes original research articles, review articles, and synthesis articles related to this field, reporting the latest discoveries in the relevant theoretical, practical, and applied disciplines in a timely manner, and aims to promote the rapid exchange of scientific information in this subject area. The journal is an open access journal. The journal is an open access journal and has not been placed on the alert list in the last three years.
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