The drag reduction properties of a turbulent channel flow modified by spanwise sinusoidal oscillations of the walls are investigated by direct numerical simulations. The work is based on the linear relation between the drag reduction and the parameter S, function of the maximum wall velocity and the period of the oscillation. This quantity, first determined by Choi et al. [Choi, J.-I, Xu, C.-X., Sung, H. J., 2002. Drag reduction by spanwise wall oscillation in wall-bounded turbulent flows. AIAA J. 40 (5), 842–850] and later studied by Quadrio and Ricco [Quadrio, M., Ricco, P., 2004. Critical assessment of turbulent drag reduction through spanwise wall oscillations. J. Fluid Mech. 521, 251–271], has been found through physical arguments pert...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
The drag reduction properties of a turbulent channel flow modified by spanwise sinusoidal oscillatio...
The drag reduction properties of a turbulent channel flow modified by spanwise sinusoidal oscillatio...
The drag reduction properties of a turbulent channel flow modified by spanwise sinusoidal oscillatio...
Abstract The objective of this paper is to examine the effectiveness of wall oscillation as a contro...
Direct numerical simulations of the incompressible Navier–Stokes equations are employed to study the...
Direct numerical simulations of the incompressible Navier–Stokes equations are employed to study the...
Direct numerical simulations of the incompressible Navier–Stokes equations are employed to study the...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Spanwise oscillation applied on the wall under a turbulent boundary layer flow is investigated using...
Direct numerical simulations of the incompressible Navier–Stokes equations are employed to study the...
Direct numerical simulations of the Navier–Stokes equations for a turbulent channel flow subject to ...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
The drag reduction properties of a turbulent channel flow modified by spanwise sinusoidal oscillatio...
The drag reduction properties of a turbulent channel flow modified by spanwise sinusoidal oscillatio...
The drag reduction properties of a turbulent channel flow modified by spanwise sinusoidal oscillatio...
Abstract The objective of this paper is to examine the effectiveness of wall oscillation as a contro...
Direct numerical simulations of the incompressible Navier–Stokes equations are employed to study the...
Direct numerical simulations of the incompressible Navier–Stokes equations are employed to study the...
Direct numerical simulations of the incompressible Navier–Stokes equations are employed to study the...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Spanwise oscillation applied on the wall under a turbulent boundary layer flow is investigated using...
Direct numerical simulations of the incompressible Navier–Stokes equations are employed to study the...
Direct numerical simulations of the Navier–Stokes equations for a turbulent channel flow subject to ...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...
Steady forcing at the wall of a channel flow is studied via direct numerical simulation to assess it...