This study investigates skin-friction drag reduction by large-scale control using buoyancy forces in a fully developed turbulent flow under a constant pressure gradient, using direct numerical simulations. The heating and cooling regions on the channel walls are alternated in the spanwise direction, thereby generating buoyancy variations. As the Richardson number increases, the drag reduction effect is enhanced, resulting in a maximum drag reduction of 5.85% at λ = 2π and Ri = 4 with opposite-phase wall heating and cooling.
Keywords
Direct numerical simulation, Large-scale control, Skin-friction drag reduction
Speaker
Menglei Wang
The University of Electro Communications, Japan
Submission Author
Menglei WangThe University of Electro-Communications
Takahiro HayashiThe University of Electro-Communications
Hiroya MamoriThe University of Electro-Communications
Takeshi MiyazakiThe University of Electro-Communications
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