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Lagrangian analysis of consecutive images: Quantification of mixing processes in drops moving in a microchannel

Authors
Han, HyejinFurst, Eric M.Kim, Chongyoup
Issue Date
7월-2014
Publisher
SPRINGER
Keywords
Microchannel; Microrheology; mu(2)-Rheology; Extent of mixing; Skewness; Shannon entropy
Citation
RHEOLOGICA ACTA, v.53, no.7, pp.489 - 499
Indexed
SCIE
SCOPUS
Journal Title
RHEOLOGICA ACTA
Volume
53
Number
7
Start Page
489
End Page
499
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/98173
DOI
10.1007/s00397-014-0769-z
ISSN
0035-4511
Abstract
A tracking method and statistical analysis is introduced to quantify the mixing of moving droplets in the Lagrangian reference frame. Aqueous microrheology samples are produced as droplets in immiscible oil using a microfluidic T-junction. Samples from initially unmixed streams of the same viscosity-fluids (water/water) or different viscosity-fluids (water/glycerin solution) are dyed with different colors to visualize their internal motions and to quantify the extent of their mixing as a function of the age in the channel. The homogeneity of the material distribution in the drop is quantified by computing skewness of pixel intensity profiles or Shannon entropy index. Such analysis is important to ensure that samples are uniformly mixed for high-throughput rheological measurements using microrheology. Samples with a high viscosity ratio mix more rapidly than those with the same viscosities and the mixing length in traversing drops in the microchannel decays exponentially with traveling displacement until the drop reaches a diffusion limit.
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