Abstract We investigate the effect of controlling large-scale, logarithmic-layer turbulent structures, which have a characteristic size and aspect ratio that scale with the distance from the wall. The aim is to quantify the effect of suppressing these structures while leaving the near-wall turbulent dynamics unaltered. By affecting only the logarithmic-layer structures, it might be possible to isolate their contribution to the drag from that of the other scales in the flow. We conduct direct numerical simulations of turbulent channel flows at friction Reynolds number ReT ?s 500-1000 and artificially remove certain streamwise and spanwise wavelengths of the wall-normal velocity across a range of heights. The...
© 2017, Springer Science+Business Media B.V., part of Springer Nature. Direct numerical simulations ...
While large-scale motions are most energetic in the logarithmic region of a high-Reynolds-number tur...
Turbulence control in the form of a streamwise travelling wave of transverse wall motion was studied...
We investigate the effect of controlling large-scale, logarithmic-layer turbulent structures, which ...
This study is motivated by the observation that the drag-reduction effectiveness achieved by the imp...
Turbulent drag reduction through streamwise travelling waves of spanwise wall oscillation is investi...
International audienceNumerical experiments that remove turbulent motions wider than lambda(+)(z) si...
© 2018 Dr Reza AbbassiThe large-scale coherent structures in the outer region of a high-Reynolds-num...
Wall-bounded turbulent flows at high Reynolds numbers have become an increasingly active area of re...
Here, we present measurements of turbulent drag reduction in boundary layers at high friction Reynol...
Opposition-control of the energetic cycle of near wall streaks in wall-bounded turbulence, using num...
We investigate statistics of large-scale structures from large-eddy simulation (LES) of turbulent ch...
The dynamics of the sublayer and buffer regions of wall-bounded turbulent flows are analysed using a...
Abstract Scaling analysis of the velocity profiles in strongly drag reduced flows reveals that the s...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76966/1/AIAA-1993-3282-205.pd
© 2017, Springer Science+Business Media B.V., part of Springer Nature. Direct numerical simulations ...
While large-scale motions are most energetic in the logarithmic region of a high-Reynolds-number tur...
Turbulence control in the form of a streamwise travelling wave of transverse wall motion was studied...
We investigate the effect of controlling large-scale, logarithmic-layer turbulent structures, which ...
This study is motivated by the observation that the drag-reduction effectiveness achieved by the imp...
Turbulent drag reduction through streamwise travelling waves of spanwise wall oscillation is investi...
International audienceNumerical experiments that remove turbulent motions wider than lambda(+)(z) si...
© 2018 Dr Reza AbbassiThe large-scale coherent structures in the outer region of a high-Reynolds-num...
Wall-bounded turbulent flows at high Reynolds numbers have become an increasingly active area of re...
Here, we present measurements of turbulent drag reduction in boundary layers at high friction Reynol...
Opposition-control of the energetic cycle of near wall streaks in wall-bounded turbulence, using num...
We investigate statistics of large-scale structures from large-eddy simulation (LES) of turbulent ch...
The dynamics of the sublayer and buffer regions of wall-bounded turbulent flows are analysed using a...
Abstract Scaling analysis of the velocity profiles in strongly drag reduced flows reveals that the s...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76966/1/AIAA-1993-3282-205.pd
© 2017, Springer Science+Business Media B.V., part of Springer Nature. Direct numerical simulations ...
While large-scale motions are most energetic in the logarithmic region of a high-Reynolds-number tur...
Turbulence control in the form of a streamwise travelling wave of transverse wall motion was studied...