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Structure of the EUROVAL Project
Description of Turbulence Models
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aerofoil airfoil algebraic artificial dissipation Baldwin-Lomax model BL model block boundary conditions boundary layer calculated by Dornier Cebeci-Smith CERFACS CFD-N CFD-Norway coefficients comparison computed convergence correction crosswise components displacement thickness distributions calculated downstream drag coefficients eddy viscosity employed Euler evaluated experimental finite volume flap fluxes formulation free-air grid Hassid-Poreh implementation integral inviscid JK model Johnson-King model k-e model laminar lift lift coefficients Mach number mandatory maximum measurements mesh momentum thickness multiblock multigrid Navier-Stokes equations Navier-Stokes methods normal obtained outer parameter partners predicted pressure distribution pressure gradient profiles cont region Reynolds number Reynolds stress Runge-Kutta Saab scheme shear stress shock position simulation SJL-W skin friction Skin-friction distribution solution stations surface Sutherland's law Table trailing edge transonic turbulence models UMIST validation variables variations vector velocity profiles vortex breakdown wake wing Xl/L