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displaying 111 - 120 results in total 221

  • Fu, T. T. M.
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    Turbulent Free Convection Flow Above a Heated Horizontal Circular Plate.
    Naval Civil Engineering Lab., Port Hueneme, CA
    NCEL-TN-1079
    Director of Navy Labs., Washington, DC, NCEL-TN-1079
    May 1970
    196 p.

  • Brenton, J. R.; Drysdale, D. D.
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    Flames in Fires and Explosions.
    Fire Engineers Journal, Vol. 57, No. 189, 27-29, July 1997

  • Bray, K. N. C.
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    Challenge of Turbulent Combustion.
    Cambridge Univ., England
    Combustion Institute, Symposium (International) on Combustion, 26th. Proceedings. Volume 1. July 28-August 2, 1996, Combustion Institute, Pittsburgh, PA, Napoli, Italy, 1-26 p., 1996

  • Libby, P. A.
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    California Univ., San Diego
    Introduction to Turbulence. Combustion: An International Series, Taylor and Francis, Washington, DC, 352 p., 1996

  • Petrov, C. A.; Ghoniem, A. F.
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    Dynamics and Structure of Interacting Nonpremixed Flames.
    Massachusetts Institute of Technology, Cambridge
    Combustion and Flame, Vol. 115, No. 1/2, 180-194, October 1998
    Air Force Office of Scientific Research, Washington, DC,

  • Papadopoulos, G.; Pitts, W. M.
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    Scaling the Near-Field Centerline Mixing Behavior of Axisymmetric Turbulent Jets.
    National Institute of Standards and Technology, Gaithersburg, MD
    AIAA Journal, Vol. 36, No. 9, 1635-1642, September 1998

  • Papadopoulos, G.; Pitts, W. M.
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    Generic Centerline Velocity Decay Curve for Initially Turbulent Axisymmetric Jets.
    Dantec Measurement Technology, Inc., Mahwah, NJ; National Institute of Standards and Technology, Gaithersburg, MD
    Journal of Fluid Engineering, Vol. 121, 80-85, March 1999

  • Benzi, R.; Ciliberto, S.; Tripiccione, R.; Baudet, C.; Massaioli, F.; Succi, S.
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    Extended Self-Similarity in Turbulent Flows.
    Universita di Roma "Tor Vergata", Roma, Italy; Ecole Normale Superieure-Lyon, France; Istituto Nazionale di Fisica, Pisa, Italy; IBM European Center for Scientific and Engineering Computing, Roma, Italy
    Physical Review E, Vol. 48, No. 1, R29-R32, July 1993

  • Pope, S. B.
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    PDF Methods for Turbulent Reactive Flows.
    Cornell Univ., Ithaca, NY
    Progress in Energy and Combustion Science, Vol. 11, No. 2, 119-192, 1985

  • Balaras, E.; Benocci, C.; Piomelli, U.
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    Finite-Difference Computations of High Reynolds Number Flows Using the Dynamic Subgrid-Scale Model.
    von Karman Institute for Fluid Dynamics, Rhode St. Genese, Belgium; Maryland Univ., College Park
    Theoretical and Computational Fluid Dynamics, Vol. 7, 207-216, 1998