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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Local evaporation flux affected by thermocapillary convection transition at an evaporating droplet
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Local evaporation flux affected by thermocapillary convection transition at an evaporating droplet

机译:蒸发液滴受热毛细管对流转变影响的局部蒸发通量

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摘要

Steady-state water evaporation experiments on a stainless steel funnel demonstrate that the local evaporation fluxes are uniform before the thermocapillary convection transition at an evaporation droplet. If a thermocapillary flow is present, the local evaporation fluxes become nonuniform along the interface as a result of effects of thermal conduction from both liquid and vapour phases and thermocapillary convection at the interface. The global evaporation rate was found to be relative to the local evaporation rate influenced by the thermocapillary flow at the interface. Statistical rate theory was applied to predict the saturation pressure locally at the measured positions. It was found that the vapour-phase pressures along the interface are parabolic once thermocapillary convection exists. But the mean of local vapour-phase pressures is consistent with the global vapour-phase pressure measured above the interface.
机译:在不锈钢漏斗上进行的稳态水蒸发实验表明,在蒸发液滴的热毛细管对流转变之前,局部蒸发通量是均匀的。如果存在热毛细管流,则由于液相和气相的热传导以及在界面处的热毛细管对流的影响,沿界面的局部蒸发通量将变得不均匀。发现整体蒸发速率与界面处热毛细流动影响的局部蒸发速率有关。应用统计速率理论来预测所测位置的局部饱和压力。已经发现,一旦存在热毛细管对流,沿界面的蒸气相压力就呈抛物线形。但是局部蒸气相压力的平均值与在界面上方测得的整体蒸气相压力一致。

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