Access provided by Rice University


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.