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Research Papers

Mechanistic study on foam lamellae flow characteristics in tubes

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Pages S5-526-S5-529 | Received 20 Oct 2014, Accepted 18 Dec 2014, Published online: 30 May 2015

References

  • D. Exerowa and P. M. Kruglyakov: ‘Foam and foam films: theory, experiments, application’; 1998, New York, Elsevier.
  • W. R. Rossen: ‘Foams in enhanced oil recovery, in foams: theory, measurements and applications’, 413–464; 1996, New York, Marcel Dekker.
  • L. W. Holm: ‘Evolution of the carbon-dioxide flooding processes’, J. Pet. Technol., 1987, 39, (11), 1337–1342.
  • J. Ali, R. W. Burley and C. W. Nutt: ‘Foam enhanced oil-recovery from sand packs’, Chem. Eng. Res. Des., 1985, 63, (3), 101–111.
  • W. Lake: ‘Enhanced oil recovery’; 1989, Prentice Hall, New Jersey, USA.
  • T. W. Patzek: ‘Field application of foam for mobility improvement and profile control’, SPE Reservoir Eng., 1996, 11, (2), 79–85.
  • S. A. Zhdanov, A. V. Amiyan, L. M. Surguchev, L. M. Castanier and J. E. Hanssen: ‘Application of foam for gas and water shut-off: review of field experience’, SPE 36914 in European Petroleum Conf., Milan, Italy, 22–24 October 1996.
  • A. T. Turta and A. K. Signhal: ‘Field foam applications in enhanced oil recovery projects: screening and design aspect’, SPE 48895 in SPE Int. Oil and Gas Conf. and Exhibition in China, Beijing, China, 2–6 November 1998.
  • D. X. Du, Y. G. Li and S. J. Sun: ‘Pseudo-plastic behavior of a film foam flow with carbon dioxide as the internal gas phase’, Adv. Mater. Res., 2011, 221, 15–20.
  • D.X. Du, Y. G. Li and S. J. Sun: ‘Experimental study on pseudo-plastic behavior for film foam flow in a vertical tube’, Adv. Mater. Res., 2011, 221, 194–199.
  • D. X. Du, S. J. Sun, L. Chen and Y. G. Li: ‘Numerical simulation of film foam flow characteristics in a straight tube’, Proc. of 2009 Int. Conf. on Modeling, Simulation and Optimization, Beijing, China, 2009, Society of Beijing Agriculture Engineering, Academy Service Group, 333–336.
  • D. X. Du, X. J. Ma, F. H. Zhang and Y. G. Li: ‘Rheology characteristics for foam lamellae flow in a straight tube’, CIESC J., 2014, 65, (S1), 194–198.
  • F. P. Bretherton: ‘The motion of long bubbles in tubes’, J. Fluid Mech., 1961, 10, (2), 166–188.
  • G. J. Hirasaki and J. B. Lawson: ‘Mechanisms of foam flow in porous media: apparent viscosity in smooth capillaries’, SPE J., 1985, 25, (2), 176–190.
  • Q. Xu and W. R. Rossen: ‘Effective viscosity of foam in periodically constricted tubes’, Colloids Surf. A, 2003, 216, (1–3), 175–194.
  • Q. P. Nguyen, P. K. Currie and P. L. J. Zitha: ‘Motion of foam films in diverging-converging channels’, J. Colloid Interf. Sci., 2004, 271, (2), 473–484.
  • A. Bejan and A. D. Kraus: ‘Heat transfer handbook’; 2003, John Wiley & Sons, New Jersey, USA.
  • D. X. Du, P. L. J. Zitha and M. Uijttenhout: ‘Carbon dioxide foam rheology in porous media: a CT scan study’, SPE J., 2007, 12, (2), 245–252.
  • D. X. Du, A. Naderi Beni, R. Farajzadeh and P. L. J. Zitha: ‘Effect of water solubility on carbon dioxide foam flow in porous media: an X-ray computed tomography study’, Ind. Eng. Chem. Res., 2008, 47, (16), 6298–6306.
  • T. W. Patzek: ‘Modeling of foam flow in porous media by the population balance method’, Chapter 16 in Surfactant-Based Mobility Control, ACS Symp. Series 373, Washington, DC, 1988.
  • A. R. Kovscek, T. W. Patzek and C. J. Radke: ‘Mechanistic foam flow simulation in heterogeneous and multidimensional porous media’, SPE J., 1997, 2, 511.
  • P. L. J. Zitha and D. X. Du: ‘A new stochastic bubble population model for foam flow in porous media’, Transp. Porous Media, 2010, 83, (3), 603–621.
  • D. X. Du, P. L. J. Zitha and F. J. Verlemon: ‘Numerical analysis of foam motion in porous media using a new stochastic bubble population model’, Transp. Porous Media, 2011, 86, (2), 491–504.

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