%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% %%%%%% %%%%%% %%%%%% Turbulent Channel Flow with streamwise rotation %%%%%% %%%%%% %%%%%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% %%%%%% %%%%%% %%%%%% 2003 - 2006 %%%%%% %%%%%% %%%%%% %%%%%% Chair of Fluid Dynamics %%%%%% %%%%%% %%%%%% %%%%%% Department of Mechanical Engineering, %%%%%% %%%%%% Technische Unversitaet Darmstadt, %%%%%% %%%%%% Otto-Berndt-Str. 2, 64287 Darmstadt, Germany %%%%%% %%%%%% %%%%%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% %%%%%% %%%%%% %%%%%% <<< CAUTION >>> %%%%%% %%%%%% %%%%%% %%%%%% All rights are reserved by the Chair of Fluid Dynamics. %%%%%% %%%%%% No part of the data described herein may be represented %%%%%% %%%%%% without reference. The data base may be used without %%%%%% %%%%%% notification to the author's laboratory. %%%%%% %%%%%% %%%%%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% %% %% %% REFERENCES: %% %% Oberlack M., Cabot W., Pettersson Reif B. A., Weller T.: %% %% "Group analysis, direct numerical simulation and modelling %% %% of a turbulent channel flow with streamwise rotation" %% %% Journal of Fluid Mechanics, 2006, Volume 562, pp. 383-403 %% %% doi:10.1017/S0022112006001121 %% %% %% %% %% %% Nomenclature: %% %% k : turbulent kinetic energy %% %% Re_tau = u_tau*h / 2*nu : Reynolds number %% %% Ro = Omega*h / u_tau : Rotation number %% %% U = streamwise mean velocity %% %% W = spanwise mean velocity %% %% u, v, w = streamwise, wall-normal and spanwise %% %% velocity fluctuations %% %% u_tau = friction velocity %% %% x, y, z = streamwise, wall-normal and spanwise directions %% %% + = normalized by wall units (u_tau) %% %% %% %% %% %% BOX SIZE (x,y,z): 16pi|2|4pi %% %% MESH NUMBER (x,y,z): 512|129|256 %% %% FLOW CONDITIONS: Re_tau = 180 %% %% Ro = 40 %% %% %% %% NUMERICAL METHOD: %% %% Lundbladh, D. Henningson and A. Johanson, "An Efficient %% %% Spectral Integration Method for the Solution of the %% %% Navier-Stokes Equations", Aeronautical Research Institute of %% %% Sweden, Bromma, 1992 %% %% %% %% Data file created: May 10, 2006 %% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% %% x2 U+ W+ uu+ uv+ uw+ vv+ vw+ ww+ %%-------------------------------------------------------------------------------------------------------- 1.00000000 0.00000000 0.00000000 0.00000000 0.00000000 0.00000000 0.00000000 0.00000000 0.00000000 0.99969882 0.05484074 0.00783816 0.00048626 0.00000082 0.00006396 0.00000000 0.00000000 0.00075613 0.99879546 0.21922811 0.03133462 0.00774726 0.00005801 0.00108993 0.00000165 0.00001780 0.01158208 0.99729046 0.49269623 0.07046613 0.03900900 0.00064453 0.00597067 0.00003502 0.00019372 0.05463926 0.99518473 0.87404116 0.12503516 0.12228032 0.00349416 0.02044539 0.00031205 0.00102876 0.15635791 0.99247953 1.35999257 0.19434169 0.29392743 0.01263904 0.05297024 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