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Evaporation of pure liquid droplets: Comparison of droplet evaporation in an acoustic field versus glass-filament

机译:纯液滴的蒸发:在声场和玻璃丝中的液滴蒸发比较

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摘要

The rate of heat and mass transfer to droplets in sprays is a critical issue in the design of many industrial spray systems. Applications like fuel injection in internal combustion engines or spray drying stimulate interest in studying the processes related to the evaporation of droplets. In this study an acoustic levitator and the glass filament method are used to observe single droplets during evaporation. The introduction of a droplet into the acoustic field leads to the formation of two steady toroidal vortices close to the droplet surface, known as outer acoustic streaming. The results of this study illustrate how this "outer acoustic streaming" affects the heat and mass transfer. The elimination of these vortices has been achieved through applying a ventilating air flow. Particle Image Velocimetry has been used to characterize the flow field and the interfacial transfer. Furthermore, the resulting evaporation rates have been verified by comparing them with existing model predictions. A comparison of these results to those obtained with the glass-filament method revealed good agreement when the air flow was increased to a limit where the inner acoustic streaming is eliminated, i.e. when forced convection was the primary mechanism in determining the evaporation rate of the liquid droplet. For other air-flow regimes no direct comparisons between results obtained with the two techniques were permissable, as confirmed by the differing Sherwood numbers obtained in the experiments.
机译:在许多工业喷雾系统的设计中,热量和质量转移到喷雾中的液滴的速率是一个关键问题。诸如内燃机中的燃料喷射或喷雾干燥之类的应用引起了人们对研究与液滴蒸发相关的过程的兴趣。在这项研究中,使用了一种悬浮声波法和玻璃丝法来观察蒸发过程中的单个液滴。将液滴引入声场会导致在液滴表面附近形成两个稳定的环形涡流,这就是外部声流。这项研究的结果说明了这种“外部声流”如何影响传热和传质。通过施加通风气流可以消除这些涡流。粒子图像测速已用于表征流场和界面转移。此外,通过将蒸发率与现有模型预测值进行比较,可以验证蒸发率。将这些结果与用玻璃丝法获得的结果进行比较,可以看出,当空气流量增加到消除内部声流的极限时,即当强制对流是确定液体蒸发速率的主要机制时,结果吻合良好。水滴。对于其他气流形式,不允许通过两种技术获得的结果之间进行直接比较,这一点已通过实验中获得的不同舍伍德数得以证实。

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