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Aufwärts: Instationäre Strömungsstrukturen im Nachlauf
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M. Schatz, U. Bunge, H. Lübcke.
Numerical study of separation control by movable flaps.
In Notes on Numerical Fluid Mechanics, Aerodynamic Drag
Reduction Technologies, pages 385-390. Springer Verlag, Berlin/Heidelberg,
2001.
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M. Schatz, F. Thiele.
Numerical study of high-lift flow with separation control by periodic
excitation.
AIAA Paper 2001-0296, 2001.
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T. Rung, D. Eschricht, J. Yan, F. Thiele.
Sound radiation of the vortex flow past a generic side mirror.
AIAA Paper 2002-2549, 2002.
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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
AIAA Journal, 41(7), 1396-1399, 2003.
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M. Schatz.
Numerische Simulation der Beeinflussung instationärer
Strömungsablösung durch frei bewegliche Rückstromklappen auf
Tragflügeln.
Dissertation, Technische Universität Berlin,
Mensch & Buch Verlag, Berlin, 2003.
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M. Schatz, T. Knacke, F. Thiele, R. Meyer, W. Hage, D.W. Bechert.
Separation Control by Self-Activated Movable Flaps.
AIAA Paper 2004-1243, 2004.
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M. Schatz, F. Thiele, R. Petz, W. Nitsche.
Separation control by periodic excitation and its application to a
high lift configuration.
submitted to AIAA Flow control conference, Portland, 2004.
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M. Schatz, B. Günther, F. Thiele.
Computational Modeling of the Unsteady Wake behind Gurney-Flaps.
submitted to AIAA Flow control conference, Portland, 2004.
- 9
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R.H. Liebeck.
Design of subsonic airfoils for high lift.
Journal of Aircraft, 15(9), 1978.
- 10
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D.W. Bechert, R. Meyer, W. Hage.
Drag reduction of airfoils with miniflaps. Can we learn from
dragonflies?
AIAA Paper 2000-2315, 2000.
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D. Jeffrey, X. Zhang.
Aerodynamics of gurney flaps on a single-element high-lift wing.
Journal of Aircraft, 37(2), 2000.
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C.S. Jang, J.C. Ross, R.M. Cummings.
Numerical investigation of an airfoil with a gurney flap.
Aircraft Design, 1, 1998.
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J.C. Ross, B.L. Storms, P.G. Carrannanto.
Lift-enhancing tabs on multi-element airfoils.
Journal of Aircraft, 32(3), 1995.
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P. Sauvage.
Étude experimentale et numérique des écoulement potentiels
et viscueux dans le voisinage d'un bord de fuite épais chambré.
Dissertation, École nationale Supérieure de l'aeronautique et
de l'espace, Toulouse, 1995.
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D. Lakehal, F. Thiele.
Sensitivity of turbulent shedding flows to non-linear stress-strain
relations and Reynolds stress models.
Computers & Fluids, 30:1-35, 2001.
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P.R. Spalart, M. Shur, M. Strelets, A. Travin.
Detached-eddy simulation of an airfoil at high angle of attack.
In Engineering Turbulence Modelling and Experiments - 4.
Elsevier, Amsterdam, 1999.
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M. Strelets.
Detached-eddy simulation of massively separated flows.
AIAA Paper 2001-0879, 2001.
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T. Rung, F. Thiele.
Computational modelling of complex boundary-layer flows.
In 9th Int. Symp. on Transport Phenomena in Thermal-Fluid
Engineering, Singapore, 1996.
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C.G. Speziale.
Turbulence modeling for time-dependent RANS and VLES:
A review.
AIAA Journal, 36(2):173-184, 1998.
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P. Batten, U. Goldberg, S. Chakravarthy.
LNS- an approach towards embedded LES.
AIAA Paper 2002-0427, 2002.
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A. Krumbein.
On modeling of transitional flow and its application on a high lift
multi-element airfoil configuration.
AIAA Paper 2003-0724, 2003.
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P.R. Spalart.
Young-person's guide to detached-eddy simulation grids.
CR-2001-211032, NASA, 2001.
- 23
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J. Jeong, F. Hussain.
On the identification of a vortex.
J. Fluid. Mech., 285:69-94, 1995.
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E.A. Anderson, A.A. Szewczyk.
Effects of a splitter plate on the near wake of a circular cylinder
in 2- and 3-dimensional flow configurations.
Experiments in Fluids, 23:161-174, 1997.
Markus Schatz
2004-01-28