论文标题

气溶胶和喷雾剂中可能的,不可能的和预期的直径以及液滴的生产率

Possible, Impossible, and Expected Diameters and Production Rates of Droplets in Aerosols and Sprays

论文作者

Mezhericher, Maksim, Stone, Howard A.

论文摘要

液滴生成喷雾剂和液滴气溶胶的液态雾化过程用于许多涉及纯溶剂,溶液和悬浮液的涂层和涂料系统。在我们最近的实验工作中,我们引入了一种新型的液态雾化过程,该过程产生了用于纯溶剂,溶液和悬浮液的微米直径液滴的微型喷雾和气溶胶:气流喷气机瓦解的薄液膜分解为液体表面,这些液体形成了液体表面。在这里,我们使用质量和能量保护的第一原理对液滴大小和流速进行了理论描述,并考虑了特定能量的比率以及雾化气体提供的特定能量速率的比率,并由原子液体消散。我们将原子图作为图形工具,以确定在各种条件下生产的气溶胶和喷雾剂中可能,不可能和预期的液滴直径以及特定的流速。我们发现该理论与实验之间的合理一致性通过雾化过程转化为亚微米计液滴的气溶胶,通过雾化过程,气体喷气机会瓦解液体形成液体表面的薄薄液体薄膜,还可以使五个传统的压力喷嘴产生五个传统的压力,从而产生直径数百微米的滴剂。我们的研究探索了Ohnesorge数量在0.01-100之间的总体范围,分析和雾化图有助于理解液态雾化,并可以作为比较不同液态雾化技术的理论框架。

Liquid atomization processes generating sprays and aerosols of droplets are used in many delivery and coating systems involving pure solvents, solutions, and suspensions. In our recent experimental work, we introduced a novel liquid atomization process generating micro-sprays and aerosols of submicron-diameter droplets for pure solvents, solutions, and suspensions: gas jets disintegrate thin liquid films that are formed as bubbles approach a liquid surface. Here we develop a theoretical description of droplet sizes and flow rates, using the first principles of conservation of mass and energy, and accounting for the ratios of specific energies and the ratios of specific energy rates provided by the atomizing gas and dissipated by the atomized liquid. We introduce atomization diagrams as a graphical tool to determine possible, impossible, and expected droplet diameters and specific flow rates in aerosols and sprays produced under various conditions. We find a reasonable agreement between the theory and experiments for five different liquids converted into aerosols of submicron-diameter droplets by an atomization process where gas jets disintegrate thin liquid films that are formed as bubbles approach a liquid surface, and also for five traditional pressure nozzles that produce sprays of droplets of hundreds of microns in diameter. Our study explored the overall range of Ohnesorge number between 0.01-100, and the analysis and atomization diagrams contribute to understanding of liquid atomization and can serve as a theoretical framework for comparing different liquid atomization techniques.

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