Calsep Websites

References

Bendiksen, K. H., Maines, D., Moe, R. and Nuland, S., SPE 19451, ”The dynamic two-phase flow model OLGA: Theory and application”, SPE Production Engineering, May 1991, pp. 171-180.

Bird, R. B., Stewart, W. E. and Lightfoot, E. N., “Transport Phenomena”, Second Edition. John Wiley & Sons, Inc. 2002.

Bishnoi, P. R., Jeje, A. A., Kalogerakis, N. and Saeger, R., "The kinetics of formation and decomposition of hydrates from mixtures of natural gas components – Experimental data and development of predictive rate expressions”, Annual Report to Energy and Mines and Resources, Ottawa, Canada, 1985.

Bishnoi, P. R., Kalogerakis, N, Jeje, A. A., Dholabhai, P.D. and Englezos, P., "The kinetics of formation and decomposition of hydrates from mixtures of natural gas components”, Final Report to Energy and Mines and Resources, Ottawa, Canada, 1986.

Englezos, P., Kalogerakis, Dholabhai, N. D. and Bishnoi, P. R., "Kinetics of formation of methane and ethane gas gydrates", Chem Eng Sci 42, 1987, pp. 2647-2658.

Hesketh, R. P., Russell, T. W. F. and Etchells, A. W., "Bubble size in horizontal pipelines", AIChE Journal 33, 1987, pp. 663-667.

Krejbjerg, K. and Sørensen, H., “A solution algorithm for simulating hydrate growth”, paper presented at the 5thh International Conference on Gas Hydrates, June 13-16, 2005, Trondheim, Norway.

Lindeloff, N., Pedersen, K. S., Rønningsen, H. P. and Milter, J., "The corresponding states viscosity model applied to heavy oil systems", Journal of Canadian Petroleum Technology 43, 2004, pp. 47-53.

Lohrenz, J., Bray, B.G. and Clark, C.R., “Calculating viscosities of reservoir fluids from their compositions”, J. Petroleum Technol., October 1964, pp. 1171-1176.

Meyer, C. A., McClintock, R. B., Silvestri, G. J., and Spencer, R. C., Jr., “Thermodynamic and transport properties of steam”, ASME Steam Tables, 2nd ed., ASME, 1967.

Mukherjee, H. and Brill, J. P., "Pressure Drop Correlations for Inclined Two-Phase Flow”, J. Energy Res. Tech. 107, 1985, pp. 549-554.

Orell, A., “Experimental validation of a simple model for gas-liquid slug flow in horizontal pipes”, Chem. Eng. Sci. 60, 2005, pp. 1371-1381.

Pedersen, K. S., Fredenslund, Aa., Christensen, P. L. and Thomassen, P., ”Viscosity of Crude Oils”, Chem. Eng. Sci. 39, 1984, pp. 1011-1016.

Pedersen, K. S. and Fredenslund, Aa., ”An Improved Corresponding States Model for the Prediction of Oil and Gas Viscosities and Thermal Conductivities”, Chem. Eng. Sci. 42, 1987, pp. 182-186.

Pedersen, K. S. and Rønningsen, H. P., ”Effect of Precipitated Wax on Viscosity – A Model for Predicting Non-Newtonian Viscosity of Crude Oils”, Energy & Fuels 14, 2000, pp. 43-51.

Rah, K. and Eu, B. C., "Free Volume and Density and Temperature Dependence of Diffusion Coefficients of Liquid Mixtures". Phys. Rev. Letters 88, 065901-1, 2002a.

Rah, K. and Eu, B. C., “Generic van der Waals Equation of State and Theory of Diffusion Coefficients: Binary Mixtures of Simple Liquids". Journal of Chemical Physics 116, 2002b, pp. 7967-7976.

Razzaque, M.M., Afacan, A., Liu, S., Nandukumar, K., Masliyah, J. H. and Sanders, R.S.,”Bubble Size in Coalescence Dominant Regime of Turbulent Air-Water Flow through Horizontal Pipes”, International Journal of Multiphase Flow 29, 2003, pp. 1451-1471.

Schmidt, E., “Properties of water and steam in SI-units”, Springer-Verlag, New York, 1969.

Skovborg, P. and Rasmussen, P., "A Mass Transport Limited Model for the Growth of Methane and Ethane Gas Hydrates", Chem Eng Sci 49, 1994, pp 1131-1143.

Thomas, D. G., "Transport Characteristics of Suspension: VIII. A Note the Viscosity of Newtonian Suspensions of Uniform Spherical Particles". Journal of Colloid Science” 20, 1965, pp 267-277.

Vysniauskas, A. and Bishnoi, P. R., “A kinetic study of methane hydrate formation”, Chem. Eng. Sci. 38, 1983, pp. 1061-1072.

Wilke, C. R. and Chang, P., "Correlation of Diffusion Coefficients in Dilute Solutions", AIChE J 1, 1955, pp. 264-270.

News & Events