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A Universal One-Equation Model for Turbulent Viscosity
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Gulyaev A.N., Kozlov V.Ye., Secundov A.N., “A Universal One-Equation Model for Turbulent Viscosity”. Fluid Dynamics. Vo1.28, No.4. pp.485-494. 1993 (Translated from Russian, Consultants bureau, New York)
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Reassessment of the Scale-Determining Equation for Advanced Turbulence Models
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Application of a Differential Equation for Turbulent Viscosity to the Analysis of Plane Non-self-similar Flows
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Secundov, A.N. “Application of a Differential Equation for Turbulent Viscosity to the Analysis of Plane Non-self-similar Flows”, Fluid Dynamics, Vo1.6, No.5, 1971, pp. 828-840 (Translated from Russian, Consultants bureau, New York).
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Use of the Equation for Turbulent Viscosity to Describe the Flow Near a Rough Surface
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(Translated from Russian, Consultants bureau, New York)
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Lebedev A.B., Secundov A.N., “Use of the Equation for Turbulent Viscosity to Describe the Flow Near a Rough Surface”, Fluid Dynamics, Vol. 10, No. 5, 1975, pp.741-744 (Translated from Russian, Consultants bureau, New York).
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Models of Turbulence for the Description of a Flow in a Jet of Compressible Gas
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Kozlov V.E, Secundov A.N, Smirnova I.P., “Models of Turbulence for the Description of a Flow in a Jet of Compressible Gas”, Fluid Dynamics. Vol. 21. No.6, 1986, pp. 875-881. (Translated from Russian, Consultants bureau, New York).
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A One-Equation Turbulence Model for Aerodynamic Flows
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Analysis of the stability of axisymmetric jets
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Turbulence in a Supersonic Flow and Its Interaction with a Shock Wave
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Secundov A.N.. “Turbulence in a Supersonic Flow and Its Interaction with a Shock Wave”. Fluid Dynamics. Vo1.9. No.2, 1974. pp.166-172. (Translated from Russian, Consultants bureau, New York)
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Calculation of a Turbulent Diffusion Combustion Flame Taking Account of Concentration Pulsations and Archimedian Forces
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(Translated from Russian, Consultants bureau, New York)
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Kuznetsov V.R., Lebedev A.B., Secundov A.N., Smirnova I.P.. “Calculation of a Turbulent Diffusion Combustion Flame Taking Account of Concentration Pulsations and Archimedian Forces”, Fluid Dynamics, 1977, No.1, pp.24-33 (Translated from Russian, Consultants bureau, New York)
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Compressibility Effects on Turbulence
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Method of Scaling the Compressibility in Calculating Stationary Flows of Viscous Gas at Arbitrary Mach Numbers
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Translated from Russian, Consultants bureau, New York
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Strelets M. Kh, and Shur, M.L.. “Method of Scaling the Compressibility in Calculating Stationary Flows of Viscous Gas at Arbitrary Mach Numbers”, U.S.S.R. Computational Mathematics and Mathematical Physics, Vo1.28. No.1. pp.165-173, 1988 (Translated from Russian, Consultants bureau, New York).
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Direct Simulation of a Turbulent Boundary Layer up to Ree=1410
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Curvature-Dependent Two-Equation Model for Prediction of Turbulent Recirculating Flows
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