Cygan, Z. T., Cabral, J. T., Beers, K. L. and Amis, E. J., Microfluidic platform for the generation of organic-phase microreactors, Langmuir, 2005, 21(8), 3629-3634. CrossRef | |
Zeng, Y., Novak, R., Shuga, J., Smith, M. T. and Mathies, R. A., High-performance single cell genetic analysis using microfluidic emulsion generator arrays, Anal. Chem., 2010, 82(8), 3183-3190. CrossRef | |
Guan, G., Teshima, M., Sato, C., Son, S. M., Irfan, M. F., Kusakable, K., Ikeda, N. and Lin, T.-J., Two-phase flow behavior in microtube reactors during biodiesel production from waste cooking oil, AIChE Journal, 2010, 56(5), 1383-1390. | |
Umbanhowar, P. B., Prasad, V. and Weitz, D. A., Monodiperse emulsion generation via drop break off in a coflowing stream, Langmuir, 2000, 16(2), 347-351. CrossRef | |
Ulmeanu, M., Preparation and characterization of water in oil emulsion via drop break-off, Colloids Surface A, 2008, 316, 119-124. CrossRef | |
Yuyama, H., Yamamoto, K., Shirafuji, K., Nagai, M., Ma, G.-H. and Omi, S., Preparation of polyuethaneurea (PUU) uniform spheres by SPG membrane emulsification technique, J. Appl. Polym. Sci., 2000, 77(10), 2237-2245. CrossRef | |
Yang, C.-H., Lin, Y.-S., Huang, K.-S., Huang, Y.-C., Wang, E.-C., Jhong, J.-Y. and Kuo, C.-Y., Microfluidic emulsification and sorting assisted preparation of monodisperse chitosan micropaticles, Lab on Chip, 2009, 9(1), 145-150. CrossRef | |
Jin, F., Gupta, N. R. and Stebe, K. J., The detachment of a viscous drop in a viscous solution in the presence of a soluble surfactant, Phys. Fluids, 2006, 18(2), paper no. 022103. | |
Zhang, X. and Basaran, O. A., An experimental study of dynamics of drop formation, Phys. Fluids, 1995, 7(6), 1184-1203. CrossRef | |
Mason, T. G. and Bibette, J., Shear rupturing of droplets in complex fluids, Langmuir, 1997, 13(17), 4600-4613. CrossRef | |
Vladisavljevic, G. T., Shimizu, M. and Nakashima, T., Preparation of monodisperse multiple emulsions at high production rates by multi-stage premix membrane emulsification, J. Membrane Sci., 2004, 244, 97-106. CrossRef | |
Anna, S. L., Bontoux, N. and Stone, H. A., Formation of dispersions using flow focusing in microchannels, Appl. Phys. Letter, 2003, 82(364), 364-366. CrossRef | |
Cramer, C., Fischer, P. and Windhab, E. J., Drop formation in a co-flowing ambient fluid, Chem. Eng. Sci., 2004, 59(15), 3045-3058. CrossRef | |
Cubaud, T. and Mason, T. G., Capillary threads and viscous droplets in square microchannels, Phys. Fluids, 2008, 20(5), paper no. 053302. | |
Castro-Hernandez, E., Gundabala, V., Fernandez-Nieves, A. and Gordillo, J. M., Scaling the drop size in coflow experiments, New J. Phys., 2009, 11(7), paper no. 075021. | |
Utada, A. S., Fernandez-Nieves, A., Stone, H. A. and Weitz, D. A., Dripping to jetting transitions in coflowing liquid streams, Phys. Rev. Lett., 2007, 99(9), paper no. 094502. | |
Gu, Y., Kojima, H. and Miki, N., Theoretical analysis of 3D emulsion droplet generation by a device using coaxial glass tubes, Sens. Actuators A: Phys., 2011, 169(2), 326-332. CrossRef | |
Zagnoni, M., Anderson, J. and Cooper, J. M., Hysteresis in multiphase microfluidics at a T-junction, Langmuir, 2010, 26(12), 9416-9422. CrossRef | |
Gupta, A., Murshed, S. M. S. and Kumar, R., Droplet formation and stability of flows in a microfludic T-junction, Appl. Phys. Letter, 2009, 94(16), paper no. 164107. | |
Suryo, R. and Basaran, O. A., Tip streaming from a liquid drip forming from a tube in a coflowing outer fluid, Phys. Fluids, 2006, 18(8), paper no. 082102. | |
Hong, Y. and Wang, F., Flow rate effect on droplet control in a co-flowing microfluidic device, Microfluid Nanofluid, 2007, 3(3), 341-346. CrossRef | |
Hua, J., Zhang, B. and Lou, J., Numerical simulation of microdroplet formation in coflowing immiscible liquids, AIChE Journal, 2007, 53(10), 2534-2547. CrossRef | |
Zhang, D. F. and Stone, H. A., Drop formation in viscous flows at a vertical capillary tube, Phys. Fluids, 1997, 9(8), 2234-2242 CrossRef | |
Zhang, X., Dynamics of drop formation in viscous flows, Chem. Eng. Sci., 1999, 54(12), pp. 1759-1774. CrossRef | |
Hirt, C. W. and Nichols, B. D., Volume of fluid (VOF) Method for the dynamics of free boundaries, J. Computational Phys., 1981, 39, 201-225. | |
Brackbill, J. U., Kothe, D. B. and Zemach C., Acontinuum method for modeling surface tension, J. Computational Phys., 1992, 100(2), 335-354. | |
Vempati, B., Panchagnula, M. V. and Neti, A. O. S., Numerical investigation of liquid-liquid coaxial flows, J. Fluids Eng., 2007, 129(6), 713-719. CrossRef | |
Comsol CFD user's guide, Comsol AB., Stockholm, 2010, 155-272 http://www.comsol.com | |
Gada, V. H. and Sharma, A., On derivation and physical-interpretation of level set method based equations for two-phase flow simulations, Numer. Heat Transfer B, 2009, 56, 307-322. CrossRef | |
Olsson, E., Kreiss, G. and Zahedi, S., A conservative level set method for two phase flow II, J. Computational Phys, 2007, 225(1), 785-807. |
Emulsion Formation in Dripping Regime of Co-Flowing Immiscible Liquids in Co-Axial Micro-Tubes
In-Hwan YangRelated information
1 Institute for Space & Nuclear Power Studies and Chemical & Nuclear Engineering Dept., University of New Mexico, Albuquerque, NM, USA
, Mohamed El-GenkRelated information1 Institute for Space & Nuclear Power Studies and Chemical & Nuclear Engineering Dept., University of New Mexico, Albuquerque, NM, USA