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Effect of junction configurations on microdroplet formation in a T-junction microchannel

机译:结构型对T型结微通道中微滴形成的影响

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This study investigates the dynamic formation process of water microdroplets in a silicon oil flow in a T-junction microchannel. Segmented water microdroplets are formed at the junction when the water flow is perpendicularly injected into the silicon oil flow in a straight rectangular microchannel. This study further presents the effects of the water flow inlet geometry on hydrodynamic characteristics of water microdroplet formation. A numerical multiphase volume of fluid (VOF) scheme is coupled to solve the unsteady three-dimensional laminar Navier-Stokes equations to depict the droplet formation phenomena at the junction. Predicted results on the length and generated frequency of the microdroplets agree well with experimental results in a T-junction microchannel with straight and flat inlets (the base model) for both fluid flows. Empirical correlations are reported between the volumetric flow ratio and the dimensionless microdroplet length or dimensionless frequency of droplet generation at a fixed capillary number of 4.7 center dot 10(-3). The results of this study indicate a reduction in the droplet length of approximately 21% if the straight inlet for the water flow is modified to a downstream sudden contraction inlet for the water flow.
机译:本研究调查了T型接头微通道中硅油流中水微滴的动态形成过程。当在直的矩形微通道中将水流垂直注入硅油流中时,会在连接处形成分段的水微滴。这项研究进一步提出了水流入口几何形状对水微滴形成的水动力特性的影响。耦合数值多相流体体积(VOF)方案来求解非稳态三维层流Navier-Stokes方程,以描述结点处的液滴形成现象。关于微滴的长度和产生频率的预测结果与在两种流体流都具有平直入口的T型接头微通道(基本模型)中的实验结果非常吻合。在固定的毛细管数为4.7个中心点10(-3)时,体积流量比与无量纲微滴长度或液滴产生的无量纲频率之间存在经验相关性。这项研究的结果表明,如果将水流的直​​进水口改成水流的下游突然收缩水口,则液滴长度减少约21%。

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