1 Sternling, C.V., Scriven, L.E., "Interfacial turbulence: Hydrodynamic instability and the Marangoni effect", AIChE J., 5, 514-523(1959).2 Scriven, L.E., Sternling, C.V., "The Marangoni effects", Nature, 187,186-188 (1960).3 Levich, V.G., Physicochemical Hydrodynamics, Prentice Hall,Englewood Cliffs, New Jersey, USA (1962).4 Sawistowski, H., Recent Advances in Liquid-Liquid Extraction,Hanson, C., ed., Pergamon, Oxford, 293-366 (1971).5 Wegener, M., Grünig, J., Stüber, J., Paschedag, A.R., Kraume, M.,“Transient rise velocity and mass transfer of a single drop with interfacial instabilities-Experimental investigations”, Chem. Eng. Sci.,62, 2967-2978 (2007).6 Lee, C.H., Ha, J.J., Chun, B.H., Yoon, H.K., Kim, S.H., “Mathematical modeling and simulation for Marangoni convection by surfactants in liquid falling film”, J. Chem. Eng. Jpn., 36, 259-264(2003).7 Zhang, Z.B., Geng, J., Zhang, F., Meng, W.M., “Marangoni effect and gas-liquid mass transfer process”, J. Chem. Ind. Eng. (China),54, 508-515 (2003). (in Chinese)8 Tang, Z.M., Hu, W.R., “A simulation model of a floating half zone”,J. Crystal Growth, 192, 335-341 (1998).9 Lappa, M., Savino, R., Monti, R., “Three-dimensional simulation of Marangoni instabilities in non-cylindrical liquid bridges in microgravity”, Int. J. Heat Mass Transfer, 44, 1983-2003 (2001).10 Li, J., Li, M.W., Hu, W.R., Zeng, D.L., “Suppression of Marangoni convection of silicon melt by a non-contaminating method”, Int. J.Heat Mass Transfer, 46, 4969-4973 (2003).11 Banerjee, J. Muralidhar, K., “Simulation of transport processes during Czochralski growth of YAG crystals”, J. Crystal Growth, 286,350-364 (2006).12 Yuan, Z.F., Huang, W.L., Mukai, K., “Local corrosion of magnesia-chrome refractories driven by Marangoni convection at the slag-metal inteface”, J. Colloid Interface Sci., 253, 211-216 (2002).13 Agble, D., Mendes-Tatsis, M.A., “The prediction of Marangoni convection in binary liquid-liquid systems with added surfactants”, Int.J. Heat Mass Transfer, 44, 1439-1449 (2001).14 Nas, S., Tryggvason, G., “Thermocapillary interaction of two bubbles or drops”, Int. J. Multiphase Flow, 29, 1117-1135 (2003).15 Rother, M.A., Zinchenko, A.Z., Davies, R.H., “A three-dimensional boundary-integral algorithm for thermocapillary motion of deformable drops”, J. Colloid Interface Sci., 245, 356-364 (2002).16 Wang, Y.X., Lu, X.Y., Zhuang, L.X., Tang, Z.M., Hu, W.R., “Numerical simulation of drop Marangoni migration under microgravity”, Acta Astronaut., 54, 325-335 (2004).17 Mao, Z.S., Chen, J.Y., “Numerical simulation of the Marangoni effect on mass transfer to single slowly moving drops in the liquid-liquid system”, Chem. Eng. Sci., 59 (8/9), 1815-1828 (2004).18 Wang, P., Kahawita, R., “Oscillatory behavior in buoyant thermo-capillary convection of fluid layers with a free surface”, Int. J. Heat Mass Transfer, 41 (2), 399-409 (1998).19 Zhou, B.H., Liu, Q.S., Tang, Z.M., “Rayleigh-Marangoni-Benard instability in two-layer fluid system”, Acta Mech. Sinica., 20 (4),366-373 (2004).20 Tan, L.H., Leonardi, E., Barber, T.J., Leong, S.S., “Experimental and numerical study of Marangoni convection in shallow liquid layers”,Int. J. Comput. Fluid Dyn., 19 (6), 457-473 (2005).21 Sha, Y., Cheng, H., Yu, Y.H., “The numerical analysis of the gas-liquid absorption process accompanied by Rayleigh convection”,Chin. J. Chem. Eng., 10 (5), 539-544 (2002).22 Sun, Z.F., Fahmy, M., “Onset of Rayleigh-Benard-Marangoni convection in gas-liquid mass transfer with two-phase flow: Theory” ,Ind. Eng. Chem. Res., 45 (9), 3293-3302 (2006).23 Bratsun, D.A., de Wit, A., “On Marangoni convective patterns driven by an exothermic chemical reaction in two-layer systems”,Phys. Fluids, 16 (4), 1082-1096 (2004).24 Grahn, A., “Two-dimensional numerical simulations of Marangoni-Bénard instabilities during liquid-liquid mass transfer in a verticalgap”, Chem. Eng. Sci., 61, 3586-3592 (2006).25 Li, X.J., Mao, Z.S., “The effect of surfactant on the motion of buoyancy-driven drop at intermediate Reynolds numbers: A numerical approach”, J. Colloid Interface Sci., 240, 307-322 (2001).26 Patankar, S.V., Numerical Heat Transfer and Fluid Flow, Wiley and Sons, New York (1980). |