8,268
Views
21
CrossRef citations to date
0
Altmetric
Original Articles

Numerical investigation of interfacial mass transfer in two phase flows using the VOF method

, , , &
Pages 100-110 | Received 30 Apr 2013, Accepted 27 May 2015, Published online: 26 Nov 2015

References

  • ANSYS. (2009). FLUENT theory guide, user guide.
  • Batchelor, G. K. (1959). Small-scale variation of convected quantities like temperature in turbulent fluid Part 1. General discussion and the case of small conductivity. Journal of Fluid Mechanics, 5, 113–133. doi: 10.1017/S002211205900009X
  • Bothe, D., Koebe, M., Wielage, K., & Warnecke, H. J. (2003). VOF-Simulation of mass transfer from single bubbles and bubble chains rising in aqueous solutions. In Proceedings of the Fourth ASME—JSME Joint Fluids Engineering Conference. Hawaii, USA.
  • Calderbank, H., & Moo-Young, M. B. (1961). The continuous phase heat and mass-transfer properties of dispersions. Chemical Engineering and Science, 16, 39–54. doi: 10.1016/0009-2509(61)87005-X
  • Chao, B. T. (1962). Motion of spherical gas bubbles in a viscous liquid at large Reynolds numbers. Physics of Fluids, 5, 69–79. doi: 10.1063/1.1706493
  • Francois, J., Dietrich, N., Guiraud, P., & Cock, A. (2011). Direct measurement of mass transfer around a single bubble by micro-PLIFI. Chemical Engineering Science, 66, 3328–3338. doi: 10.1016/j.ces.2011.01.049
  • Kreutzer, M. T., Kapteijn, F., Moulijna, J. A., & Heiszwolf, J. J. (2005). Multiphase monolith reactors: chemical reaction engineering of segmented flow in microchannels. Chemical Engineering Science, 60, 5895–5916. doi: 10.1016/j.ces.2005.03.022
  • Kröger, M., Alke, A., Bothe, D., & Warnecke, H. J. (2007). A VOF-based approach for the simulation of reactive mass transfer from rising bubbles. In Proceedings of 4th International Berlin Workshop on Transport Phenomena with Moving Boundaries (pp. 290–301). Berlin, Germany.
  • Oezkan, F. (2013). Investigation and modeling of heterogeneously catalyzed G/L reactions in microreactors. Karlsruhe: PhD Thesis, Karlsruhe Institute of Technology.
  • Onea, A. (2006). Numerical simulation of mass transfer with and without first order chemical reaction in two-fluid flows. PhD Thesis, University of Karlsruhe, Department of Mechanical Engineering.
  • Özkan, F., Wörner, M., Wenka, A., & Soyhan, H. S. (2007). Critical evaluation of CFD codes for interfacial simulation of bubble-train flow in a narrow channel. International Journal for Numerical Methods in Fluids, 55, 537–564. doi: 10.1002/fld.1468
  • Ozmen-Cagatay, H., & Kocaman, S. (2011). Dam-break flow in the presence of obstacle: Experiment and CFD simulation. Engineering Applications of Computational Fluid Mechanics, 5(4), 541–552. doi: 10.1080/19942060.2011.11015393
  • Qian, D., & Lawal, A. (2006). Numerical study on gas and liquid slugs for Taylor flow in a T-junction microchannel. Chemical Engineering Science, 61, 7609–7625. doi: 10.1016/j.ces.2006.08.073
  • Raymond, F., & Rosant, J. M. (2000). A numerical and experimental study of the terminal velocity and shape of bubbles in viscous liquids. Chemical Engineering Science, 55, 943–955. doi: 10.1016/S0009-2509(99)00385-1
  • Sato, T., Jung, R. T., & Abe, S. (2000). Direct simulation of droplet flow with mass transfer at interface. ASME Journal of Fluids Engineering, 122, 510–516. doi: 10.1115/1.1287504
  • Wang, S., Su, Y., Wang, Z., Zhu, X., & Liu, H. (2014). Numerical and experimental analyses of transverse static stability loss of planing craft sailing at high forward speed. Engineering Applications of Computational Fluid Mechanics, 8(3), 44–54. doi: 10.1080/19942060.2014.11015496
  • Wielage, K. (2005). Analysis of non-newtonian and two phase flows. Paderborn: Dissertation, University of Paderborn.
  • Youngs, D. L. (1982). Numerical methods for fluid dynamics. New York: Academic Press.