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Water droplet freezing on cold surfaces with distinct wetabilities

机译:水滴冻结在寒冷的表面上,具有不同的湿度

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This paper investigates the total freezing time of droplets on surfaces with various wettabilities with horizontal and inclined orientations. A two-dimensional Volume of Fluid (VOF) method was applied to capture the liquid-air interface, and an automatic localized grid treatment technique was applied to increase the accuracy, especially near the impact and spreading areas. The Kistler and Shikhumurzaev dynamic contact angle models were implemented to impose the dynamic contact angles on different surfaces. An enthalpy-porosity technique was used to predict the phase change of droplets after impact with the surface. The results of the nondimensional droplet diameter ratios and total freezing times for both dynamic contact angle models have been presented and verified with experimental data. The effects of both wetting properties and the surface inclination on the freezing time have been analyzed. The results indicate that a lower surface temperature, a decrease in static contact angle and a higher inclination will result in more rapid freezing of droplets.
机译:本文研究了各种液滴与水平和倾斜方向的各种液滴的总冰冻时间。施加二维流量(VOF)方法以捕获液体 - 空气界面,并应用自动局部电网处理技术以提高精度,特别是在冲击和扩散区域附近。实施KISTLER和SHIKHUMURZAEV动态接触角模型以施加不同表面上的动态接触角。使用焓 - 孔隙率技术来预测与表面冲击后液滴的相变。已经介绍了与实验数据的非潜能液滴直径比率和全动接触角模型的总冰冻时间的结果。已经分析了润湿性能和表面倾斜度对冷冻时间的影响。结果表明,较低的表面温度,静态接触角的降低和更高的倾斜度将导致液滴更快地冻结。

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