Dynamics of Electrically Actuated Carreau Fluid Flow in a Surface-Modulated Microchannel
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-7177-0_42
Reference16 articles.
1. Wang X, Cheng C, Wang S, Liu S (2009) Electroosmotic pumps and their applications in microfluidic systems. Microfluid Nanofluid 6:145–162
2. Gorkin R, Park J, Siegrist J, Amasia M, Lee BS, Park JM, Cho YK (2010) Centrifugal microfluidics for biomedical applications. Lab Chip 10(14):1758–1773
3. Meisel I, Ehrhard P (2006) Electrically-excited (electroosmotic) flows in microchannels for mixing applications. Eur J Mech-B/Fluids 25(4):491–504
4. Chen Y, Lv Z, Wei Y, Li J (2022) Mixing performance of the induced charge electro-osmosis micromixer with conductive chamber edges for viscoelastic fluid. Phys Fluids 34(8):083110
5. Villone MM, D’avino G, Hulsen MA, Greco F, Maffettone PL (2013) Particle motion in square channel flow of a viscoelastic liquid: migration vs. secondary flows. J Nonnewton Fluid Mech 195:1–8
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