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Study on spreading of liquid droplet impacting on a solid dry surface

机译:液滴施加对固体干燥表面的散布研究

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A numerical computation and theoretical model are presented on spreading of a single droplet impacting on a solid surface at low Weber number. The numerical simulation uses combined Level Set-VOF method and a precise wetting model. The singularity at the moving contact line was analyzed and removed by present wetting model. A theoretical model based on the energy balance was developed to predict the maximum spreading ratio, accounting for wetting effect by a correction factor. The droplets shapes, the dimensionless spreading radius and the dimensionless height of droplet calculated by present numerical method were compared with the experimental data. The theoretical model is used to predict the maximum spreading ratio. The numerical and theoretical results agree well with the experimental data. Present theoretical model indicates that capillary effects may be neglected if 6We(We/3+4)Re.
机译:在低韦伯数下施加在固体表面上的单滴漏的展开时,提出了一种数值计算和理论模型。数值模拟采用组合级Set-VOF方法和精确的润湿模型。通过现有的润湿模型分析和除去移动接触线处的奇点。开发了一种基于能量平衡的理论模型,以预测最大扩散比,判断纠正因子的润湿效果。将通过现有数值方法计算的液滴形状,无量值扩散半径和通过现有数值方法计算的液滴的无量纲高度进行比较。理论模型用于预测最大扩散比率。数值和理论结果与实验数据很好。本发明的理论模型表明,如果6WE(WE / 3 + 4) RE,则可以忽略毛细血管效应。

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