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Droplet size effects on the dynamics of the impingement of an acetone droplet on a high-temperature surface

机译:液滴尺寸影响丙酮液滴在高温表面上撞击的动力学

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摘要

The process of the impact of an acetone droplet upon a hot flat surface is analyzed based on a 3-D numerical simulation, which considers the evaporation behavior. The 3-d level-set method is used to track the droplet surface during its deformation. The flow field within the droplet and the surrounding gas phase is solved using the finite volume method with the ALE (Arbitrary Lagrangian Eulerian) technique. The dynamic characteristics of the vapor flow are solved by a vapor flow model that accounts for the lubrication resistant effect of the vapor cushion formed by the film-boiling evaporation. The heat flux across the vapor layer and the temperature fields in all phases are determined by using a full field heat transfer model. The effects of the droplet size are illustrated in this study. The spreading and recoiling motion of the impacting droplets is compared for droplets with three different initial diameters. The extent of the droplet spreading and the residence time of the droplet on the Surface both increase with an increase in the droplet size. For all cases, the heat transfer rate at the solid surface is much larger in the spreading process than that in the recoiling and rebounding processes.
机译:基于3-D数值模拟,分析了丙酮液滴对热平面的撞击过程,该模拟考虑了蒸发行为。 3-d水平集方法用于在液滴变形期间跟踪液滴表面。使用ALE(任意Lagrangian欧拉)技术,通过有限体积法求解液滴和周围气相中的流场。蒸气流的动态特性通过蒸气流模型解决,该模型考虑了由薄膜沸腾蒸发形成的蒸气垫的抗润滑作用。通过使用全场传热模型,可以确定蒸气层上的热通量和所有相中的温度场。液滴大小的影响在本研究中得到了说明。比较具有三个不同初始直径的液滴的撞击液滴的散布和回缩运动。液滴散布的程度和液滴在表面上的停留时间都随着液滴尺寸的增加而增加。在所有情况下,散布过程中固体表面的传热速率都比卷取和回弹过程中的大。

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