Dossier: Solid/Liquid Dispersions in Drilling and Production
Open Access
Numéro
Oil & Gas Science and Technology - Rev. IFP
Volume 59, Numéro 1, January-February 2004
Dossier: Solid/Liquid Dispersions in Drilling and Production
Page(s) 11 - 21
DOI https://doi.org/10.2516/ogst:2004002
Publié en ligne 1 décembre 2006
  • Luo, Y., Bern, P.A. and Chambers, B.D. (1992) Flow-Rate Predictions for Cleaning Deviated Wells. IADC/SPE 23884. [Google Scholar]
  • Luo, Y., Bern, P.A., Chambers, B.D. and Kellingray, D.S. (1994) Simple Charts to Determine Hole Cleaning Requirements in Deviated Wells. IADC/SPE 27486. [Google Scholar]
  • Clark, R.K. and Bickham, K.L. (1994) A Mechanistic Model for Cuttings Transport. SPE 28306. [Google Scholar]
  • Turian, R.M. and Yuan, T.F. (1977) Flow of Slurries in Pipelines. AIChE Journal, 23, 232. [CrossRef] [Google Scholar]
  • Newitt, D.M.,Richardson, J.F.,Abbott, M. and Turtle, R.B. (1955) Hydraulic Conveying of Solids in Horizontal Pipes, Trans. Instn. Chem. Engng., 33, 93. [Google Scholar]
  • Durand, R. (1953) Basic Relationships of the Transportation of Solids in Pipes - Experimental Research. Proc. 5th Minneapolis Int. Hydraulics Convent, 89. [Google Scholar]
  • Leighton, D. and Acrivos, A. (1986) Viscous Resuspension. Chemical Engineering Science, 41, 6, 1377. [Google Scholar]
  • Leighton, D. and Acrivos, A. (1987) The Shear-Induced Migration of Particles in Concentrated Suspensions. J. Fluid Mech., 181, 415. [CrossRef] [Google Scholar]
  • Morris, J.F. and Brady, J.F. (1999) Pressure-Driven Flow of a Suspension: Buoyancy Effects. Int. J. Multiphase Flow, 24, 1, 105. [CrossRef] [Google Scholar]
  • Simkhis, M., Creutz, M., Barnea, B., Taitel, Y. and Mewes, D. (1998) Hydrodynamic Characteristics of Wave Like Flow in Solid-Liquid Mixtures in Pipes. Proceeding of ICMF 98, Lyon. [Google Scholar]
  • Takahashi, H.,Masuyama, T. and Noda, K. (1989) Unstable Flow of a Solid-Liquid Mixture in a Horizontal Pipe. Int. J. Multiphase Flow, 15, 5, 831. [CrossRef] [Google Scholar]
  • Segré, G. and Silberberg, A. (1962) Behaviour of Macroscopic Rigid Spheres in Poiseuille Flow. Part 1: Determination of Local Concentration by Statistical Analysis of Particle Passages Through Crossed Light Beams. J. Fluid Mech., 14, 115. [CrossRef] [Google Scholar]
  • Segré, G. and Silberberg, A. (1962) Behaviour of Macroscopic Rigid Spheres in Poiseuille Flow. Part 2: Experimental Results and Interpretation. J. Fluid Mech., 14, 136. [CrossRef] [Google Scholar]
  • Wilson, K.C. (1976) A Unified Physically-Based Analysis of Solid-Liquid Pipeline Flow. Proc. 4th Int. Conf. on Hydraulic Transport of solids, Paper A1. [Google Scholar]
  • Doron P.,Granica, D. and Barnea, D. (1987) Slurry Flow in Horizontal Pipes-Experimental and Modeling. Int. J. Multiphase Flow, 13, 4, 535. [Google Scholar]
  • Shook, C.A. and Roco, M.C. (1991) Slurry Flow - Principles and Practice. Butterworth-Heinemann Series in Chemical Engineering. [Google Scholar]
  • Happel, J. and Brenner, H. (1983) Low Reynolds Number Hydrodynamic, Martinus Nijhoff Publishers. [Google Scholar]
  • Batchelor, G.K. (1971) Sedimentation in a Dilute Dispersion of Spheres. J. Fluid Mech, 245. [Google Scholar]
  • Nicolai, H.,Herzhaft, B.,Hinch, E.J.,Oger, L. and Guazzelli, E. (1995) Particle Velocity Fluctuations and Hydrodynamic Self-Diffusion of Sedimenting Non-Brownian Spheres. Phys. Fluids, 7, 12. [CrossRef] [Google Scholar]
  • Segrè, P.N.,Helbolzheimer, E. and Chaikin, P.M. (1997) Long-Range Correlations in Sedimentation. Phys. Rev. Lett., 79, 2574. [CrossRef] [Google Scholar]
  • Tee, S.Y., Mucha, P.J., Cipelletti, L., Manley, S.,Brenner M.P.,Segre, P.N. and Weitz, D.A. (2002) Nonuniversal Velocity Fluctuations of Sedimenting Particles. Physical Review Letter, 89, 5. [CrossRef] [Google Scholar]
  • Chhabra, R.P. (1993) Bubbles, Drops and Particles in Non- Newtonian Fluids, CRC Press, Boca Raton. [Google Scholar]
  • Krieger, I.M. and Dougherty, T.J. (1959) A Mechanism for Non-Newtonian Flow in Suspensions of Rigid Spheres. Transactions of the Society of Rheology, 3, 137. [Google Scholar]
  • Coussot, P., Nguyen, Q.D., Huynh, H.T. and Bonn, D. (2002) Avalanche Behavior in Yield Stress Fluids. Physical Review Letter. [Google Scholar]
  • Coussot, P.,Nguyen, Q.D.,Huynh, H.T. and Bonn, D. (2002) Viscosity Bifurcation in Thixotropic, Yielding Fluids. Journal of Rheology, 46, 3. [Google Scholar]
  • Coussot, P. and Ancey, C. (1999) Rhéophysique des pâtes et des suspensions, EDP Science. [Google Scholar]

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