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Evaporation of acoustically levitated multi-component liquid droplets

机译:悬浮悬浮的多组分液滴的蒸发

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摘要

A theoretical model for the evaporation of multi-component liquid droplets based on the model by Abramzon and Sirignano is presented and applied to the evaporation of acoustically levitated droplets. The liquid phase is treated as a thermodynamically real fluid, using the UNIFAC method for calculating the component activities, and the gas phase as ideal. Computational results, which consist in the droplet surface and volume, temperature and composition as functions of time, are verified by experiments carried out with single droplets evaporating in an acoustic levitator. The results are in excellent agreement, suggesting that the model correctly captures the physico-chemical phenomena in multi-component liquid droplet evaporation.
机译:提出了基于Abramzon和Sirignano模型的多组分液滴蒸发的理论模型,并将其应用于声悬浮液滴的蒸发。使用UNIFAC方法计算组分活度,将液相视为热力学上真实的流体,而将气相视为理想流体。计算结果由液滴表面和体积,温度和组成随时间变化而变化,并通过在声学悬浮器中蒸发单个液滴进行的实验进行验证。结果非常吻合,表明该模型正确地捕获了多组分液滴蒸发中的物理化学现象。

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