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Doklady Physics

, Volume 55, Issue 4, pp 199–202 | Cite as

Two-continua model of suspension flow in a hydraulic fracture

  • S. A. Boronin
  • A. A. Osiptsov
Mechanics

Keywords

Compu Tational Fluid Dynamics Hydraulic Fracture Carrier Phase DOKLADY Physic Suspension Flow 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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References

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    M. J. Economides and K. G. Nolte, Reservoir Stimulation (John Wiley and Sons, New York, 2000).Google Scholar
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    P. S. Hammond, “Settling and Slumping in a Newtonian Slurry, and Implications for Proppant Placement During Hydraulic Fracturing of Gas Wells,” Chem. Eng. Sci. 50(20), 3247–3260 (1995).CrossRefGoogle Scholar
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    S. J. McCaffery, L. Elliott, and D. B. Ingham, “Enhanced Sedimentation in Inclined Fracture Channels, Topics in Engineering,” (CD-ROM ISBN 1-85312-546-6, 1997), Vol. 32.Google Scholar
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    R. I. Nigmatulin, Dynamics of Multiphase Media (Hemisphere Publ., 1991), Vols. 1,2.Google Scholar
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    S. A. Boronin, “Investigation of the Stability of a Plane-Channel Suspension Flow with Account for Finite Particle Volume Fraction,” Fluid Dyn. 43(6), 873–884 (2009).CrossRefMathSciNetGoogle Scholar
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    D. G. Thomas, “Transport Characteristics of Suspensions: VIII. A Note on Viscosity of Newtonian Suspensions of Uniform Spherical Particles,” J. Colloid. Sci. 20, 267–277 (1965).CrossRefGoogle Scholar
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    C. Hirsch, Numerical Computation of External and Internal Flows, 2nd ed. The Fundamentals of Computational Fluid Dynamics, Elsevier (ISBN: 978-0-7506-6594-0, 2007).Google Scholar

Copyright information

© Pleiades Publishing, Ltd. 2010

Authors and Affiliations

  • S. A. Boronin
    • 1
  • A. A. Osiptsov
    • 1
  1. 1.Schlumberger Moscow Research Institute of MechanicsLomonosov Moscow State UniversityMoscowRussia

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