Thermodynamics and Kinetics Laboratory, Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, Canada M5S 3G8.
J Colloid Interface Sci. 2012 Oct 1;383(1):198-207. doi: 10.1016/j.jcis.2012.06.046. Epub 2012 Jun 27.
We have generated stability parameters using a linear stability analysis to predict the onset criteria for Marangoni convection in evaporating sessile droplets for two types of substrates, insulating and conducting. The stability problem was formulated with boundary conditions that allow for a temperature discontinuity at the liquid-vapour interface and the inclusion of an expression for the evaporation flux that considers this temperature discontinuity. We introduce no fitting coefficients; therefore, the stability parameters we generate contain only physical variables. The results indicate that spherical sessile droplets evaporating on insulating substrates are predicted to have a similar onset criteria with sessile droplets evaporating on conducting substrates. The onset prediction for sessile droplets evaporating on insulating substrates is found to be considerably different than the case of liquids evaporating from conical funnels constructed of insulating materials owing to the modification of the boundary condition from the geometrical shift and the corresponding retention of modes in the solution. A parametric analysis demonstrates how the input variables impact the stability of evaporating sessile droplets.
我们使用线性稳定性分析生成了稳定性参数,以预测蒸发液滴中 Marangoni 对流的起始准则,涉及两种类型的基底,即绝缘基底和导电基底。稳定性问题的公式化考虑了允许在液-气界面存在温度不连续的边界条件,以及包含考虑该温度不连续的蒸发通量表达式。我们没有引入拟合系数;因此,我们生成的稳定性参数仅包含物理变量。结果表明,预测在绝缘基底上蒸发的球形液滴与在导电基底上蒸发的液滴具有相似的起始准则。对于在绝缘材料制成的圆锥形漏斗中蒸发的液体,蒸发液滴的起始预测与之前的情况有很大的不同,这是由于边界条件的修正,包括几何位移和对应解中模式的保留。参数分析展示了输入变量如何影响蒸发液滴的稳定性。