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Computation of Aerodynamic Coefficients for Transport Aircraft with MEGAFLOW.

Authors :
Hirschel, Ernst Heinrich
Fujii, Kozo
Haase, Werner
Leer, Bram
Leschziner, Michael A.
Pandolfi, Maurizio
Periaux, Jacques
Rizzi, Arthur
Roux, Bernard
Shokin, Yurii I.
Kroll, Norbert
Fassbender, Jens K.
Rakowitz, Mark
Heinrich, Sascha
Krumbein, Andreas
Eisfeld, Bernhard
Sutcliffe, Mark
Source :
MEGAFLOW - Numerical Flow Simulation for Aircraft Design; 2005, p135-150, 16p
Publication Year :
2005

Abstract

The accuracy of the DLR structured and unstructured computational fluid dynamics (CFD) codes in predicting aircraft forces and moments on several configurations at low and high Mach and Reynolds numbers is investigated. Using a combination of a high quality grid, i.e. a grid with sufficient resolution of important flow features, low levels of artificial dissipation and advanced turbulence models, the structured code (FLOWer) is able to both qualitatively and quantitatively predict the experimentally measured drag, lift, pitching moment and pressure distribution. Compared to the structured methods the total time for grid generation is significantly reduced with the unstructured approach (TAU). The quality of the flow solution is comparable to the structured method at significantly higher computational costs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISBNs :
9783540243830
Database :
Supplemental Index
Journal :
MEGAFLOW - Numerical Flow Simulation for Aircraft Design
Publication Type :
Book
Accession number :
32946815
Full Text :
https://doi.org/10.1007/3-540-32382-1_10