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File:DEA P6 IKN 09 2000.pdf

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(The MSc thesis of Ioannis Nousis at University UPMC, Paris. The work consists in validating a Reynolds stress turbulence closure on 2-D airfoil geometries for transonic compressible viscous flow regimes. Prediction of the aerodynamic performance of severa)
 
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The MSc thesis of Ioannis Nousis at University UPMC, Paris. The work consists in validating a Reynolds stress turbulence closure on 2-D airfoil geometries for transonic compressible viscous flow regimes. Prediction of the aerodynamic performance of several airfoil test-cases (NACA 0012 and RAE 2822). Validation of the turbulence model against wind tunnel experiments. All the experimental data bases used are included in the Annexes of the report. Key words: transonic viscous flows, numerical simulation, external aerodynamics, shoc wave-boundary layer interaction, biharmonic structured grid.
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The MSc thesis of Ioannis Nousis at University UPMC, France. The work consists in validating a Reynolds stress turbulence closure on 2-D airfoil geometries for transonic compressible viscous flow regimes. Prediction of the aerodynamic performance of several airfoil test-cases (NACA 0012 - RAE 2822). Validation of the turbulence model against wind tunnel experiments. The experimental data bases used are included in the Annexes of the report. Key words: transonic viscous flows, numerical simulation, external aerodynamics, shoc wave-boundary layer interaction, biharmonic structured grid.

Latest revision as of 20:04, 24 January 2006

The MSc thesis of Ioannis Nousis at University UPMC, France. The work consists in validating a Reynolds stress turbulence closure on 2-D airfoil geometries for transonic compressible viscous flow regimes. Prediction of the aerodynamic performance of several airfoil test-cases (NACA 0012 - RAE 2822). Validation of the turbulence model against wind tunnel experiments. The experimental data bases used are included in the Annexes of the report. Key words: transonic viscous flows, numerical simulation, external aerodynamics, shoc wave-boundary layer interaction, biharmonic structured grid.

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current19:57, 24 January 2006 (1.93 MB)Jnousis (Talk | contribs) (The MSc thesis of Ioannis Nousis at University UPMC, Paris. The work consists in validating a Reynolds stress turbulence closure on 2-D airfoil geometries for transonic compressible viscous flow regimes. Prediction of the aerodynamic performance of severa)

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