表面张力
微流控
接触角
微通道
粘度
机械
体积流量
流动聚焦
流量(数学)
计算机模拟
化学
流量控制(数据)
水平集方法
两相流
相(物质)
纳米技术
材料科学
热力学
复合材料
计算机科学
物理
计算机网络
有机化学
人工智能
图像分割
分割
摘要
To satisfy the increasingly high demands in many applications of microfluidics, the size of the droplet needs accurate control. In this paper, a level-set method provides a useful method for studying the physical mechanism and potential mechanism of two-phase flow. A detailed three-dimensional numerical simulation of microfluidics was carried out to systematically study the generation of micro-droplets and the effective diameter of droplets with different control parameters such as the flow rate ratio, the continuous phase viscosity, the interfacial tension, and the contact angle. The effect of altering the pressure at the x coordinate of the main channel during the droplet formation was analysed. As the simulation results show, the above control parameters have a great influence on the formation of droplets and the size of the droplet. The effective droplet diameter increases when the flow rate ratio and the interfacial tension increase. It decreases when the continuous phase viscosity and the contact angle increase.
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