A combinatorial approach to microfluidic mixing

A new computational approach to the modeling and design of efficient microfluidic mixers is demonstrated. The mixers created provide far more rapid mixing than previous designs. A set of mixer components is created and mapped using a traditional Navier-Stokes fluid solver. The maps are used to quick...

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Veröffentlicht in:Journal of micromechanics and microengineering 2008-11, Vol.18 (11), p.115019-115019 (7)
Hauptverfasser: Howell, Peter B, Mott, David R, Ligler, Frances S, Golden, Joel P, Kaplan, Carolyn R, Oran, Elaine S
Format: Artikel
Sprache:eng
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Zusammenfassung:A new computational approach to the modeling and design of efficient microfluidic mixers is demonstrated. The mixers created provide far more rapid mixing than previous designs. A set of mixer components is created and mapped using a traditional Navier-Stokes fluid solver. The maps are used to quickly model the effect each component has on the lateral distribution of species in the channel. For a mixer of a given length, all the possible combinations of components can be evaluated, and the best mixer for a given metric can be found. Although the mixers presented in this study are short (length-to-width ratios below 8), they show degrees of mixing comparable to much longer mixers found in the literature.
ISSN:0960-1317
1361-6439
DOI:10.1088/0960-1317/18/11/115019