Method for determining mixing index in microfluidics by RGB color model

Microfluidic mixing is a key process in miniaturized analysis system. Achieving adequate mixing performance is considerably difficult in microfluidic micromixer, as the flow is always associated with unfavorable laminar flow and dominated by molecular diffusion. The mixing performance of these micro...

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Main Authors: Fahizan, Bin Mahmud, Khairul Fikri, Bin Tamrin
Format: E-Article
Language:English
Published: John Wiley & Sons 2020
Subjects:
Online Access:http://ir.unimas.my/id/eprint/28927/1/Method%20for%20determining%20mixing%20index%20in%20microfluidics%20by%20RGB%20color%20model%20-%20Copy.pdf
http://ir.unimas.my/id/eprint/28927/
https://onlinelibrary.wiley.com/journal/19322143
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Institution: Universiti Malaysia Sarawak
Language: English
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spelling my.unimas.ir.289272020-02-11T00:11:58Z http://ir.unimas.my/id/eprint/28927/ Method for determining mixing index in microfluidics by RGB color model Fahizan, Bin Mahmud Khairul Fikri, Bin Tamrin TP Chemical technology Microfluidic mixing is a key process in miniaturized analysis system. Achieving adequate mixing performance is considerably difficult in microfluidic micromixer, as the flow is always associated with unfavorable laminar flow and dominated by molecular diffusion. The mixing performance of these micromixers are generally characterized as a function of mixing index based on dispersion (homogeneity) information, leading to either an overestimated or underestimated mixing index. This paper presents a new method for determining the mixing index of micromixers based on RGB color model by decoding mixing images to their respective red, green, and blue pixel intensities. Several digital composite images were used to perform initial benchmarking, and the proposed method accurately quantified the mixing index significantly better than previously adopted methods. The practicality of the method was further demonstrated by characterizing mixing of well-known micromixers, namely T- and Y- micromixers, at varying Reynolds numbers of 5 ≤ Re ≤ 100. The results show that the mixing index decreases with the increase in Reynolds number, whereas the mixing index of the T-micromixer was superior to that of Y-micromixer, both agreeing well with the literature. The mixing index of these micromixers at varying Reynolds numbers of 5 ≤ Re ≤ 100 calculated using other methods were also compared and discussed. The proposed method is foreseen handy and robust in characterizing mixing in real time for gradient mixing in networked microchannels and multivortex mixing for the manipulation of fluids, particles, and biological substances. John Wiley & Sons 2020-01-19 E-Article PeerReviewed text en http://ir.unimas.my/id/eprint/28927/1/Method%20for%20determining%20mixing%20index%20in%20microfluidics%20by%20RGB%20color%20model%20-%20Copy.pdf Fahizan, Bin Mahmud and Khairul Fikri, Bin Tamrin (2020) Method for determining mixing index in microfluidics by RGB color model. Asia‐Pacific Journal of Chemical Engineering, 15 (2). pp. 1-12. ISSN 1932-2143 https://onlinelibrary.wiley.com/journal/19322143 10.1002/apj.2407
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Fahizan, Bin Mahmud
Khairul Fikri, Bin Tamrin
Method for determining mixing index in microfluidics by RGB color model
description Microfluidic mixing is a key process in miniaturized analysis system. Achieving adequate mixing performance is considerably difficult in microfluidic micromixer, as the flow is always associated with unfavorable laminar flow and dominated by molecular diffusion. The mixing performance of these micromixers are generally characterized as a function of mixing index based on dispersion (homogeneity) information, leading to either an overestimated or underestimated mixing index. This paper presents a new method for determining the mixing index of micromixers based on RGB color model by decoding mixing images to their respective red, green, and blue pixel intensities. Several digital composite images were used to perform initial benchmarking, and the proposed method accurately quantified the mixing index significantly better than previously adopted methods. The practicality of the method was further demonstrated by characterizing mixing of well-known micromixers, namely T- and Y- micromixers, at varying Reynolds numbers of 5 ≤ Re ≤ 100. The results show that the mixing index decreases with the increase in Reynolds number, whereas the mixing index of the T-micromixer was superior to that of Y-micromixer, both agreeing well with the literature. The mixing index of these micromixers at varying Reynolds numbers of 5 ≤ Re ≤ 100 calculated using other methods were also compared and discussed. The proposed method is foreseen handy and robust in characterizing mixing in real time for gradient mixing in networked microchannels and multivortex mixing for the manipulation of fluids, particles, and biological substances.
format E-Article
author Fahizan, Bin Mahmud
Khairul Fikri, Bin Tamrin
author_facet Fahizan, Bin Mahmud
Khairul Fikri, Bin Tamrin
author_sort Fahizan, Bin Mahmud
title Method for determining mixing index in microfluidics by RGB color model
title_short Method for determining mixing index in microfluidics by RGB color model
title_full Method for determining mixing index in microfluidics by RGB color model
title_fullStr Method for determining mixing index in microfluidics by RGB color model
title_full_unstemmed Method for determining mixing index in microfluidics by RGB color model
title_sort method for determining mixing index in microfluidics by rgb color model
publisher John Wiley & Sons
publishDate 2020
url http://ir.unimas.my/id/eprint/28927/1/Method%20for%20determining%20mixing%20index%20in%20microfluidics%20by%20RGB%20color%20model%20-%20Copy.pdf
http://ir.unimas.my/id/eprint/28927/
https://onlinelibrary.wiley.com/journal/19322143
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