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  • Hartel, C.; Kleiser, L.; Unger, F.; Friedrich, R.
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    Subgrid-Scale Energy Transfer in the Near-Wall Region of Turbulent Flows.
    Institute for Fluid Mechanics, Gottingen Germany; Technical University of Munich, Germany
    Physics of Fluids, Vol. 6, No. 9, 3130-3143, September 1994

  • Jaberi, F. A.; James, S.
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    Dynamic Similarity Model for Large Eddy Simulation of Turbulent Combustion.
    State University of New York, Buffalo
    Physics of Fluids, Vol. 10, No. 7, 1775-1777, July 1998

  • Horiuti, K.
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    New Dynamic Two-Parameter Mixed Model for Large-Eddy Simulation.
    Tokyo Institute of Technology, Japan
    Physics of Fluids, Vol. 9, No. 11, 3443-3464, November 1997

  • Ghosal, S.; Moin, P.
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    Basic Equations for the Large Eddy Simulation of Turbulent Flows in Complex Geometry.
    Stanford Univ., CA
    Journal of Computational Physics, Vol. 118, 24-37, 1995

  • Ghosal, S.; Lund, T. S.; Moin, P.; Akselvoll, K.
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    Dynamic Localization Model for Large-Eddy Simulation of Turbulent Flows.
    Stanford Univ., CA
    Journla of Fluid Mechanics, Vol. 286, 229-255, 1995

  • Leslie, D. C.; Quarini, G. L.
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    Application of Turbulence Theory to the Formulation of Subgrid Modelling Procedures.
    Queen Mary College, London, England; Atomic energy Research Establishment, Oxfordshire, England
    Journal of Fluid Mechanics, Vol. 91, No. 1, 65-91, 1979

  • Leonard, A.
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    Energy Cascade in Large-Eddy Simulations of Turbulent Fluid Flows.
    NASA Ames Research Center, Moffett Field, CA
    Advancement Geophysics, Vol. 18, 237-248, 1974

  • Leith, C. E.
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    Stochastic Backscatter in a Subgrid-Scale Model: Plane Shear Mixing Layer.
    Lawrence Livermore Lab., CA
    Physics of Fluids A, Vol. 2, No. 3, 297-299, March 1990

  • Meneveau, C.; Katz, J.
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    Conditional Subgrid Force and Dissipation in Locally Isotropic and Strained Turbulence.
    Johns Hopkins Univ., Baltimore, MD
    Physics of Fluids, Vol. 11, No. 8, 2317-2329, August 1999

  • Meneveau, C.; Katz, J.
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    Dynamic Testing of Subgrid Models in Large Eddy Simulation Based on the Germano Identity.
    Johns Hopkins Univ., Baltimore, MD
    Physics of Fluids, Vol. 11, No. 2, 245-247, February 1999