Turbulence Modeling For Cfd Wilcox 2006 Pdf
- H.-J. Allelein, S. Arndt, W. Klein-Hes̈ling, S. Schwarz, C. Spengler and G. Weber: “COCOSYS: Status of development and validation of the German containment code system”, Nuclear Engineering and Design, vol. 238, pp. 872–889, 2008CrossRefGoogle Scholar
- H.-J. Allelein, K. Neu and J.P. Van Dorsselaere: “European validation of the integral code ASTEC (EVITA) first experience in validation and plant sequence calculations”, Nuclear Engineering and Design, vol. 235, pp. 285–308, 2005CrossRefGoogle Scholar
- I. Kljenak, M. Babic, B. Mavko and I. Bajsic: “Modelling of containment atmosphere mixing and stratification experiment using a CFD approach”, Nuclear Engineering and Design, vol. 236, pp. 1682–1692, 2006CrossRefGoogle Scholar
- M. Houkema, N.B. Siccama, J.A. Lycklama and E.M.J. Komen: “Validation of the CFX4 CFD code for containment thermal-hydraulics”, Nuclear Engineering and Design, vol. 238, pp. 590–599, 2008Google Scholar
- “International Standard Problem ISP-47 on containment thermal hydraulics final report”, Nuclear Energy Agency, NEA/CSNI/R(2007)10Google Scholar
- T. Kanzleiter, A. Kühnel, K. Fischer, M. Heitsch and B. Schramm: “Technical Report THAI Blower Test TH 20”, Report No. 150 1325 TH20, Gesellschaft für Reaktorsicherheit, Köln, 2007Google Scholar
- H. Siekmann and P. Thamsen: “Strömungslehre”, vol. 2, Springer, Berlin, 2008Google Scholar
- W. Rodi: “Turbulence Models and Their Application in Hydraulics, A State-of-the-art Review”, vol 3, A.A. Balkema, Rotterdam, 1993Google Scholar
- D. Wilcox: Turbulence Modelling for CFD, vol. 2, DCW Industries, USA, 2004Google Scholar
- W.P. Jones and D. Lentini: “A realisable non-linear eddy viscosity/diffusivity model for confined swirling flows”, International Journal of Heat and Fluid Flow, 2008Google Scholar
- F. Menter: “Two-equation eddy-viscosity turbulence models for engineering applications”, AIAA Journal, vol. 32, pp. 1598–1605, 1994CrossRefGoogle Scholar
- E. Laurien and T. Wintterle: “On the numerical simulation of flow and heat transfer within the fuel-assembly of the high-performance light-water-reactor”, Proceedings of the KTH-Workshop on Modelling and Measurements of Two-Phase Flows and Heat Transfer in Nuclear Fuel Assemblies, 200lGoogle Scholar
- C. Speziale, S. Sarkar and T. Gatski: “Modelling the pressure-strain correlation of turbulence: an invariant dynamical systems approach”, Journal of Fluid Mechanics, vol. 227, pp. 245–272, 1991CrossRefzbMATHGoogle Scholar
- ANSYS CFX User DocumentationGoogle Scholar
Regularization of Wilcox (2006) k-ω turbulence model and validation on shock wave/boundary layer interaction Conference Paper (PDF Available) June 2015 with 247 Reads. Turbulence modeling for cfd Download turbulence modeling for cfd or read online here in PDF or EPUB. Please click button to get turbulence modeling for cfd book now. Turbulence Modeling For Cfd Wilcox 2006 Pdf Converter. 7/11/2017 0 Comments Theses and Dissertations Available from Pro.
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- Apsley, D.D. and Leschziner, M.A., 1999, “Advanced turbulence modeling of separated flow in a diffuser”, Flow”, Turbulence and Combustion, Vol.63, pp. 81–112CrossRefGoogle Scholar
- Buice, Carl.U. Eaton, John. K., 2000, “Experimental investigation of flow through an asymmetric planar diffuser”, Journal of fluids engineering, Vol.5, pp. 433–435CrossRefGoogle Scholar
- Cherry, E.M. and G. Iaccarino, 2006, “Separated flow in a threedimensional diffuser: preliminary validation”, Center for Turbulence Research Annual Research BriefsGoogle Scholar
- Durbin, P.A., 1995, “Separated flow computations with the model”, AIAA Journal, Vol.33, pp. 659–664CrossRefGoogle Scholar
- Herbst A.H and Henningson D.S., 2007, “Simulations of turbulent flow in a planar asymmetric diffuser”, Flow turbulence combustion, Vol.79, pp. 275–306CrossRefGoogle Scholar
- Hoefener, L. Nitsche, W, 2008, “Experimental investigations of controlled transition in a laminar separation bubble at an axisymmetric diffuser”, New results in numerical and experimental fluid mechanics VI, Vol.96, pp. 244–251CrossRefGoogle Scholar
- Johnston, J.P., 1998, “Review: Diffuser Design and performance analysis by a unified integral method“, Journal of fluids engineerin, Vol. 3, pp. 6–18CrossRefGoogle Scholar
- Leschziner, M.A and Wang, C. et al., 2006, “Contribution by ICSTM: modeling generic 2D and 3D separated flow using anisotropy-resoling turbulence closures”, Flomania-an European initiative on flow physics modeling, Vol.94, pp. 77–84CrossRefGoogle Scholar
- Menter, Florian R., 1994, “Assessment of two-equation turbulence models for transonic flows”, AIAA-2343Google Scholar
- Spalart, P.R. and Allmaras, S.R., 1992, “A one-equation turbulence model for aerodynamic flows”, AIAA-0439Google Scholar
- Wilcox, D.C, 2006, “Turbulence model for CFD”, 3rd ed. La Caflada, CA: DCW Industries, IncGoogle Scholar
- Wilcox, D.C., 2001, “Turbulence modeling: An overview”, AIAA-0724Google Scholar