通过数值模拟研究收缩微通道中液滴的稳态速度

Thanh Tung Nguyen, V. Hoang, D. Luu, Ngoc Hai Tran, M. Tran, Le Hung Toan Do
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引用次数: 0

摘要

基于液滴的微流控系统正日益发展并广泛应用于分析技术和实验的各个领域。为了优化和推进这一系统,液滴动力学是最重要的。液滴的速度非常重要,因为它有助于精确的液滴控制和操作,最终导致设备设计和性能的优化。本文利用数值模拟的方法探讨了收缩微通道的流动特性、流体性质和几何参数对液滴稳定状态下速度的影响。结果表明,液滴速度受黏度比(λ)、毛细数(Ca)和收缩比(C)等因素的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the velocity of droplet at steady state in contraction microchannels by numerical simulation
The droplet-based microfluidic system is increasingly advancing and widely applied in various fields of analytical techniques and experiments. To optimize and advance this system, droplet dynamics is of utmost concern. The velocity of droplets is highly significant as it aids in precise droplet control and manipulation, ultimately leading to the optimization of device design and performance. This paper utilizes numerical simulations to explore the influence of flow characteristics, fluid properties, and geometric parameters of the contraction microchannel on the velocity of droplets while they are in a stable state. The findings indicate that the droplet velocity is influenced by factors such as viscosity ratio (λ), capillary number (Ca), and contraction ratio (C).
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