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TECHNICAL PAPERS

Oil-Water Two-Phase Flows in Large-Diameter Pipelines

[+] Author and Article Information
H. Shi, J. Cai, W. P. Jepson

NSF, I/UCRC Institute for Corrosion and Multiphase Technology, Department of Chemical Engineering, Ohio University, Athens, OH 45701

J. Energy Resour. Technol 123(4), 270-276 (Jun 07, 2001) (7 pages) doi:10.1115/1.1414136 History: Received October 28, 1999; Revised June 07, 2001
Copyright © 2001 by ASME
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References

Pal,  R., 1993, “Pipeline Flow of Unstable and Surfactant-Stabilized Emulsions,” AIChE J., 39, pp. 1754–1764.
Shi, H., Cai, J., and Jepson, W. P., 1999, “The Effect of Surfactants on Flow Characteristics in Oil/Water Flows in Large Diameter Horizontal Pipelines,” Multiphase’99, 9th International Conference, Cannes, France, pp. 181–199.
Oglesby, K. D., 1979, “An Experimental Study on the Effects of Oil Viscosity, Mixture Velocity and Water Fraction on Horizontal Oil-Water Flow,” M.S. thesis, University of Tulsa, Tulsa, OK.
Trallero,  J. L., Sarica,  C., and Brill,  J. P., 1996, “A Study of Oil-Water Flow Patterns in Horizontal Pipes,” SPE 36609, pp. 63–375.
Kanwar, S., and Jepson, W. P., 1994, “A Model to Predict Sweet Corrosion of Multiphase Flow in Horizontal Pipelines,” CORROSION/94, NACE International, Paper No. 24.
Shi, H., Cai, J., and Jepson, W. P., 1999, “Oil-Water Distributions in Large Diameter Horizontal Pipelines,” Multiphase Flow and Heat Transfer, 4th International Symposium, Xian, China, pp. 73–80.
Shi, H., 2000, “Oil-Water Flows,” Technical Report, Advisory Board Meeting for NSF I/UCRC Corrosion in Multiphase Systems Center, Athens, OH, Oct.
Shi, H., 2001, “Oil-Water Flows,” Ph.D. dissertation, Ohio University, Athens, OH.
Shi, H., 1998, “Oil-Water Flows,” Technical Report, Advisory Board Meeting for NSF I/UCRC Corrosion in Multiphase Systems Center, Athens, OH, May.

Figures

Grahic Jump Location
Experimental layout of the flow loop
Grahic Jump Location
Oil-water distribution (20 percent water, 0 ppm surfactant)
Grahic Jump Location
Oil-water distribution (40 percent water, 0 ppm surfactant)
Grahic Jump Location
Oil-water distribution (60 percent water, 0 ppm surfactant)
Grahic Jump Location
Oil-water distribution (80 percent water, 0 ppm surfactant)
Grahic Jump Location
Oil-water distribution (20 percent water, 5 ppm surfactant)
Grahic Jump Location
Oil-water distribution (40 percent water, 5 ppm surfactant)
Grahic Jump Location
Oil-water distribution (60 percent water, 5 ppm surfactant)
Grahic Jump Location
Oil-water distribution (80 percent water, 5 ppm surfactant)
Grahic Jump Location
Oil-water distribution (40 percent water, 10 ppm surfactant)
Grahic Jump Location
Oil-water distribution (80 percent water, 10 ppm surfactant)

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