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Effect of inter-particle interactions on evaporation of droplets in a linear array

机译:粒子间相互作用对线性阵列中液滴蒸发的影响

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Effects of interparticle interactions on evaporation have been examined on droplets in a linear array generated by a modified vibrating orifice aerosol generator (VOAG). The size as well as the spacing between the droplets was varied by modulating the frequency of the generator, and the liquid flow rate through the orifice. Ethanol and methanol droplets of differing initial sizes and spacings were studied, and the instantaneous evaporation rates as well as droplet temperatures were measured using a resonance-based light scattering technique. The results show that at a fixed dimensionless spacing between the droplets (i.e., the ratio of the spacing to the droplet radius, l/a), the size and temperature versus time data are highly reproducible. The measured evaporation rates were normalized by the evaporation rates of an isolated droplet under identical conditions to obtain the interaction parameter (eta) as a function of the dimensionless spacing between the droplets. The value of eta was observed to decrease with a decrease in l/a as predicted by the theoretical models, and as expected, found to be the same for ethanol and methanol droplets.
机译:已经对由改进的振动孔气溶胶发生器(VOAG)产生的线性阵列中的液滴检查了颗粒间相互作用对蒸发的影响。通过调节发生器的频率和通过孔口的液体流速,可以改变液滴的大小和间距。研究了具有不同初始大小和间距的乙醇和甲醇液滴,并使用基于共振的光散射技术测量了瞬时蒸发速率以及液滴温度。结果表明,在液滴之间的固定无量纲间距(即,间距与液滴半径之比,l / a)下,尺寸和温度与时间的数据可高度再现。通过在相同条件下分离的液滴的蒸发速率对测得的蒸发速率进行归一化,以获得作为液滴之间无量纲间距的函数的相互作用参数(η)。如理论模型所预测的,观察到eta值随l / a的降低而降低,并且正如预期的那样,发现乙醇和甲醇液滴的eta值相同。

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