Experimental study of skin friction drag reduction of turbulent boundary layer over shallow dimples
暂无分享,去创建一个
B. Khoo | Yongdong Cui | V. Nguyen | M. Razzak | D. Wise | Z. Teo | J. Tay | T. Nadesan | Kun Ting E Chua | Boppana Vbl
[1] B. Khoo,et al. Geometric Effects of Shallow Dimples in Turbulent Channel Flows at $$Re_{\tau }\approx 180$$: A Vorticity Transport Perspective , 2020 .
[2] P. Spalart,et al. Experimental and numerical study of the turbulent boundary layer over shallow dimples , 2019, International Journal of Heat and Fluid Flow.
[3] L. Veldhuis,et al. An experimental investigation into the flow mechanics of dimpled surfaces in turbulent boundary layers , 2018 .
[4] D. Dowling,et al. Freeman Scholar Review: Passive and Active Skin-Friction Drag Reduction in Turbulent Boundary Layers , 2016 .
[5] Xikun Wang,et al. Control of flow past a dimpled circular cylinder , 2015 .
[6] P. Monkewitz,et al. Systematic errors of skin-friction measurements by oil-film interferometry , 2015, Journal of Fluid Mechanics.
[7] Javier Jiménez,et al. Drag reduction by riblets , 2011, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[8] David M. Driver,et al. Skin-Friction Measurements Using Oil-Film Interferometry in NASA's 11-Foot Transonic Wind Tunnel , 2008 .
[9] M. J. Walsh,et al. Riblets as a Viscous Drag Reduction Technique , 1983 .
[10] Gerhard Wellein,et al. Direct Numerical Simulation of Turbulent Flow Over Dimples – Code Optimization for NEC SX-8 plus Flow Results , 2008 .
[11] G. Lauder,et al. Passive and Active Flow Control by Swimming Fishes and Mammals , 2006 .