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Numerical study of thermocoalescence of microdroplets in a microfluidic chamber

机译:微流室内微滴热凝聚的数值研究

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The present paper reports the numerical investigation of thermocoalescence of droplets in a microchannel network consisting of a droplet formation section connecting to a temperature-induced merging chamber. The numerical model is formulated as an incompressible immiscible two-phase flow problem with oil and water as the continuous and dispersed phase, respectively. The governing equations are solved using finite volume method on a staggered mesh. The interface is captured by a narrow-band particle level-set method. The paper examines the droplet formation process and droplet size at 4 different ratios of oil and water flow rate. The motion of the droplets from the formation section into and through the heat-induced merging chamber is analyzed. The numerical method is able to provide a visual presentation of the droplet movement in a heated environment under the influence of thermocapillarity. The relationship between the critical merging temperature and the fluid flow rate is also analyzed and discussed.
机译:本文报道了在微通道网络中的液滴热凝聚的数值研究,该网络由与温度诱导的合并腔相连的液滴形成部分组成。数值模型用油和水分别作为连续相和分散相的不可压缩不混溶两相流动问题来表示。用有限体积法在交错网格上求解控制方程。该界面是通过窄带粒子级别设置方法捕获的。本文考察了油水流速的4种不同比率下的液滴形成过程和液滴尺寸。分析了液滴从形成区进入并通过热诱导合并腔的运动。数值方法能够在热毛细作用的影响下,在加热环境中提供液滴运动的可视化表示。还分析并讨论了临界合并温度与流体流速之间的关系。

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