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Title: Dynamics of internal jets in the merging of two droplets of unequal sizes
Authors: Tang, C
Zhao, J 
Zhang, P 
Law, CK
Huang, Z
Issue Date: 25-May-2016
Source: Journal of fluid mechanics, 25 May. 2016, v. 795, p. 671-689
Abstract: The head-on collision, merging and internal mixing dynamics of two unequal-sized droplets were experimentally studied and interpreted, using water, n-decane and n-tetradecane to identify the distinguishing effects of surface tension and liquid viscosity on the merging and mixing patterns. It is shown that, upon merging of water and n-decane droplets, mushroom-like jets of dissimilar characteristics develop within the merged mass for small and large values of the impact Weber number (We), and that such jets are not developed for intermediate values of We. Furthermore, such jet-like mixing patterns were not observed for droplets of n-tetradecane, which has smaller surface tension and larger viscosity as compared to water. A regime nomogram relating the Ohnesorge and symmetric Weber numbers is constructed, providing a unified interpretation of the internal mixing patterns. Numerical simulations based on an improved volume-of-fluid method and an adaptive mesh refinement algorithm provide auxiliary diagnoses of the flow fields and the observed phenomena.
Keywords: Breakup/coalescence
Drops
Drops and bubbles
Publisher: Cambridge University Press
Journal: Journal of fluid mechanics 
ISSN: 0022-1120
EISSN: 1469-7645
DOI: 10.1017/jfm.2016.218
Rights: This article has been published in a revised form in Journal of Fluid Mechanics [https://doi.org/10.1017/jfm.2016.218]. This version is free to view and download for private research and study only. Not for re-distribution or re-use. © Cambridge University Press 2016.
When citing an Accepted Manuscript or an earlier version of an article, the Cambridge University Press requests that readers also cite the Version of Record with a DOI link. The article is subsequently published in revised form in Journal of Fluid Mechanics https://dx.doi.org/10.1017/jfm.2016.218.
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