Hu Hua, Larson Ronald G
Department of Chemical Engineering, University of Michigan, Ann Arbor, MI 48109-2136, USA.
Langmuir. 2005 Apr 26;21(9):3963-71. doi: 10.1021/la047528s.
The axisymmetric time-dependent flow field in an evaporating sessile droplet whose contact line is pinned is studied numerically and using an analytical lubrication theory with a zero-shear-stress boundary condition on the free surface of the droplet at low capillary and Reynolds numbers. A finite element algorithm is developed to solve simultaneously the vapor concentration and flow field in the droplet under conditions of slow evaporation. The finite element solution confirms the accuracy of the lubrication solution, especially when terms of higher order in the droplet flatness ratio (the ratio of droplet height to radius, h/R) are included in the lubrication theory to account more accurately for the singular flow near the contact line.
研究了接触线固定的蒸发 sessile 液滴中的轴对称时间相关流场,采用数值方法,并在低毛细管数和雷诺数下,在液滴自由表面采用零剪切应力边界条件的解析润滑理论。开发了一种有限元算法,用于在缓慢蒸发条件下同时求解液滴中的蒸汽浓度和流场。有限元解证实了润滑解的准确性,特别是当润滑理论中包含液滴扁平率(液滴高度与半径之比,h/R)的高阶项时,能更准确地考虑接触线附近的奇异流。