首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Effect of Intersection Angle and Wettability on Droplet Generation in Microfluidic Flow-Focusing Device
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Effect of Intersection Angle and Wettability on Droplet Generation in Microfluidic Flow-Focusing Device

机译:交叉角和润湿性对微流体流动聚焦装置液滴产生的影响

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摘要

This article investigates the dynamics of droplet generation process in a microfluidic flow-focusing device under the effect of geometry altered by the intersection angle (phi), which the flanking inlets make with central inlet and wall wettability quantified by the contact angle (theta) using volume of fluid (VOF) model. These parameters have been found to alter the droplet shape and size greatly. The effect of intersection angles has been examined for phi = 15 deg, 30 deg, 45 deg, 60 deg, 90 deg, and 120 deg for generating size-controlled droplets. It was predicted that the diameter of droplet increased with the increase in intersection angle (phi = 15 deg, 30 deg, 45 deg, 60 deg, 90 deg, and 120 deg) and the maximum diameter has been generated at phi = 90. In addition, the wetting characteristics (hydrophilic to hydrophobic) have been studied numerically in detail by changing the contact angle of the dispersed phase with the channel wall ranging from 90 deg to 180 deg. It was indicated that the droplets of rectangular shape are formed in hydrophilic channel by completely wetting the wall when theta <= 90 deg. They transform their shape to slightly oval form with the increase in contact angle and start acquiring spherical shape when the channel becomes hydrophobic. Furthermore, Parameters such as dimensionless droplet diameter, droplet shape, and droplet breakup time have also been investigated extensively for flowrate ratios Q = 0.125, 0.25, 0.5, and 1, in order to optimize the microfluidic device.
机译:本文研究了在交叉角(PHI)改变的几何形状的效果下的微流体流动聚焦装置中液滴生成过程的动态,其中侧翼入口与由接触角(θ)的中央入口和壁润湿性进行的侧翼入口。使用流体量(VOF)模型。已经发现这些参数改变了液滴形状和大小。已经检查了交叉角的效果,用于PHI = 15°,30℃,45°,60℃,90°和120°,用于产生尺寸控制的液滴。预测,液滴的直径随交叉角的增加而增加(PHI = 15℃,30℃,45℃,60℃,90℃,并且在PHI = 90处产生最大直径。在此外,通过将分散的相的接触角与沟道壁从90°至180°的沟道壁改变,通过改变分散的相的接触角来对润湿特性(亲水至疏水)进行了解详细。结果表明,当θ<= 90°时,通过完全润湿壁在亲水通道中形成矩形的液滴。它们以稍微椭圆形的形状转变为略微椭圆形,随着通道变疏水,开始获取球形。此外,还在广泛地研究了诸如无量纲液滴直径,液滴形状和液滴破碎时间的参数,以便流动比率Q = 0.125,0.25,0.5和1,以优化微流体装置。

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