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通过一步乳化法在微流控生成双乳液中预测和控制液滴形成模式。

Prediction and control of drop formation modes in microfluidic generation of double emulsions by single-step emulsification.

机构信息

Department of Chemical Engineering, Loughborough University, Loughborough LE11 3TU, United Kingdom; Combustion and CCS Centre, Cranfield University, Cranfield MK43 0AL, United Kingdom.

Department of Chemical Engineering, Loughborough University, Loughborough LE11 3TU, United Kingdom.

出版信息

J Colloid Interface Sci. 2017 Nov 1;505:315-324. doi: 10.1016/j.jcis.2017.05.115. Epub 2017 Jun 1.

Abstract

HYPOTHESIS

Predicting formation mode of double emulsion drops in microfluidic emulsification is crucial for controlling the drop size and morphology.

EXPERIMENTS AND MODELLING

A three-phase Volume of Fluid-Continuum Surface Force (VOF-CSF) model was developed, validated with analytical solutions, and used to investigate drop formation in different regimes. Experimental investigations were done using a glue-free demountable glass capillary device with a true axisymmetric geometry, capable of readjusting the distance between the two inner capillaries during operation.

FINDINGS

A non-dimensional parameter (ζ) for prediction of double emulsion formation mode as a function of the capillary numbers of all fluids and device geometry was developed and its critical values were determined using simulation and experimental data. At logζ>5.7, drops were formed in dripping mode; the widening jetting occurred at 5<logζ<5.7; while the narrowing jetting was observed at logζ<5. The ζ criterion was correlated with the ratio of the break-up length to drop diameter. The transition from widening to narrowing jetting was achieved by increasing the outer fluid flow rate at the high capillary number of the inner fluid. The drop size was reduced by reducing the distance between the two inner capillaries and the minimum drop size was achieved when the distance between the capillaries was zero.

摘要

假设

在微流控乳化中预测双乳液滴的形成模式对于控制液滴尺寸和形态至关重要。

实验和建模

开发了三相体积流连续表面力(VOF-CSF)模型,通过解析解进行了验证,并用于研究不同状态下的液滴形成。实验研究使用了一种无胶可拆卸的玻璃毛细管装置,具有真正的轴对称几何形状,能够在操作过程中重新调整两个内毛细管之间的距离。

发现

开发了一个无量纲参数(ζ),用于预测双乳液形成模式,作为所有流体和设备几何形状的毛细数的函数,并使用模拟和实验数据确定了其临界值。在 logζ>5.7 时,以滴状模式形成液滴;在 5<logζ<5.7 时发生展宽射流;而在 logζ<5 时观察到缩窄射流。ζ准则与断裂长度与液滴直径的比值相关。通过在外层流体的高毛细数下增加外层流体流量,可以实现从展宽射流到缩窄射流的转变。通过减小两个内毛细管之间的距离,可以减小液滴尺寸,当毛细管之间的距离为零时,可以达到最小的液滴尺寸。

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