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J.B. Vos, A. Rizzi, D. Darracq, E.H. Hirschel:
Navier-Stokes Solvers in European Aircraft Design.
Progress in Aerospace Sciences 38 (8), 2002, pp. 601-697.
 
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P.A. Durbin:
A Perspective on Recent Developments in RANS Modeling.
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Turbulence Modelling and Experiments 5, Elsevier, 
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D.C. Wilcox: Turbulence Modeling for CFD. 
DCW Industries, Inc., La Cañada, CA, USA, 1993.
 
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F.R. Menter: 
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P.R. Spalart:
Trends in Turbulence Treatments. AIAA Paper 2000-2306,
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T. Rung, F. Thiele:
Computational Modelling of Complex Boundary-Layer Flows.
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T. Rung, H. Lübcke, M. Franke, L. Xue, F. Thiele, S. Fu:
Assessment of Explicit Algebraic Stress Models 
in Transonic Flows. In: W. Rodi, D. Laurence (Eds.): 
Engineering Turbulence Modelling and Experiments 4, Elsevier, 
Amsterdam, 1999, pp. 659-668.
 
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S. Wallin, A:V. Johannson:
An Explicit Algebraic Reynolds Stress Model for Incompressible and
Compressible Turbulent Flows.
Journal of Fluid Mechanics 403, 2000, pp. 89-132.
 
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S. Wallin:
An Efficient Explicit Algebraic Reynolds Stress  - - Model
(EARSM) for Aeronautical Applications. FFA TN 1999-71, 1999.
In: S. Wallin: Engineering Turbulence 
Modelling for CFD with a Focus on Explicit Algebraic Reynolds 
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(EARSM) for Aeronautical Applications. FFA TN 1999-71, 1999.
In: S. Wallin: Engineering Turbulence 
Modelling for CFD with a Focus on Explicit Algebraic Reynolds 
Stress Models. Dissertation, KTH Stockholm, 2000.
 
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J.C. Kok:
Resolving the Dependence on Free-Stream Values for the  - - Turbulence Model. AIAA Journal 38 (7), 2000, pp. 1292-1295. Turbulence Model. AIAA Journal 38 (7), 2000, pp. 1292-1295.
 
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P.R. Spalart, S.R. Allmaras:
A One-Equation Turbulence Model for Aerodynamic Flows.
AIAA-Paper 92-0439, 30th AIAA Aerospace Sciences Meeting, 
Reno, USA, 1992.
 
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T. Rung, U. Bunge, M. Schatz, F. Thiele:
Restatement of the Spalart-Allmaras Eddy-Viscosity Model in a
Strain-Adaptive Formulation.
Technical Note, AIAA Journal, 41 (7), pp. 1396-1399, (2003).
 
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M. Franke, T. Rung, E. Elsholz, P. Aumann, F. Thiele:
Numerical Simulation of Three-Dimensional 
Transonic Flows Using Advanced 
Turbulence-Transport Models.
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Dynamics II, Notes on Numerical Fluid Mechanics,
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E. Monsen, M. Franke, T. Rung, P. Aumann, A. Ronzheimer:
Assessment of Advanced Transport-Equation Turbulence 
Models for Aircraft Aerodynamic Performance Prediction.
AIAA Paper 99-3701, 30th AIAA Fluid Dynamics Conference, 
Norfolk, USA, 1999.
 
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M. Franke, T. Rung, M. Schatz, F. Thiele:
Numerical Simulation of High-Lift Flows 
Employing Improved Turbulence Modelling.
ECCOMAS 2000, 11.-14.9.2000, Barcelona, Spain. 
 
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M. Franke:
Untersuchung zum Potential höherwertiger Turbulenzmodelle
für den aerodynamischen Entwurf.
Dissertation, TU Berlin, 2003. 
 
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P.H. Cook, M.A. McDonald, M.C.P. Firmin:
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R. Rudnik:
Untersuchung der Leistungsfähigkeit von 
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A. Gould, J.-C. Courty, M. Sillen, E. Elsholz, A. Abbas:
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ECCOMAS 2000, 11.-14.9.2000, Barcelona, Spain. 
 
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S.X. Ying, F.W. Spaid, C.B. McGinley, C.L. Rumsey,          
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K.D. Squires, J.R. Forsythe, S.A. Morton, W.Z. Strang,
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AIAA Paper 2002-1021, 40th AIAA Aerospace Sciences Meeting, 
Reno, USA, 2002.
 
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H. Grotjans, F.R. Menter:
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Athens, Greece; Wiley, Chichester, 1998, pp. 1112-1117. 
 
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P. Eliasson, S. Wallin:
A Robust and Positive Scheme for Viscous, Compressible
Steady State Solutions with Two-Equation Turbulence Models.
FFA TN 1999-81, 1999. In: S. Wallin: Engineering Turbulence 
Modelling for CFD with a Focus on Explicit Algebraic Reynolds 
Stress Models. Dissertation, KTH Stockholm, 2000.
 
Martin Franke
2003-10-22