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Formation of compound droplets during fragmentation of turbulent buoyant oil jet in water

机译:在水中湍流浮油喷射碎片期间形成复合液滴

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摘要

Fragmentation of a vertical buoyant silicone oil jet injected into sugar water is elucidated by refractive index matching and planar laser-induced fluorescence. Compound droplets containing multiple water droplets, some with smaller oil droplets, form regularly at jet Reynolds numbers of Re = 1358 and 2122 and persist for at least up to 30 nozzle diameters. In contrast, they rarely appear at Re = 594. The origin of some of the encapsulated water droplets can be traced back to the entrained water ligaments during the initial roll-up of Kelvin-Helmholtz vortices. Analysis using random forest-based procedures shows that the fraction of compound droplets does not vary significantly with Re, but increases rapidly with droplet diameter, reaching 78% for 2 mm droplets. Consequently, the size distributions of compound droplets have peaks that increase in magnitude and shift to a lower diameter with increasing Re. On average, the interior pockets raise the oil-water interfacial area by 15 %, increasing with diameter and axial location. Also, while the oil droplets are deformed by the jet's shear field, the interior interfaces remain nearly spherical, consistent with prior studies of the deformation of isolated compound droplets for relevant capillary numbers and viscosity ratio.
机译:通过折射率匹配和平面激光诱导的荧光阐明注入糖水中的垂直浮力硅油喷射的碎片化。含有多个水滴的复合液滴,一些具有较小的油滴,在Re = 1358和2122的射流雷诺数处定期形成,并且持续至少30个喷嘴直径。相反,它们很少出现在Re = 594。在Kelvin-Helmholtz涡流的初始卷起期间,一些封装的水滴的起源可以追溯到夹带的水韧带。使用随机森林的程序的分析表明,复合液滴的级分不会随着RE而显着变化,但随着液滴直径迅速增加,达到78%,持续2 mm液滴。因此,复合液滴的尺寸分布具有峰值,其幅度增加并且随着越来越多的RE而移动到下直径。平均而言,内部口袋将油水界面面积升高15%,随着直径和轴向的增加而增加。而且,虽然油液滴被喷射的剪切场变形,但内部界面仍然几乎是球形的,并且与相关的复合液滴的变形的先前研究一致,同时为相关的毛细管数和粘度比。

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