Drag reduction effect of V-shaped superhydrophobic surfaces in turbulent channel flow
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Begellhouse
Reference6 articles.
1. S. Watanabe, H. Mamori, K. Fukagata, Drag-reducing performance of obliquely aligned superhydrophobic surface in turbulent channel flow, In Fluid Dyn. Res., 49, 025501, 20 pp., 2017.
2. H. O. G. Benschop and W. -P. Breugem, Drag reduction by herringbone riblet texture in direct numerical simulations of turbulent channel flow, In J. Turbul., 18, 8, pp. 717-759, 2017.
3. F. H. Harlow and J. E. Welch, Numerical calculation of time-dependent viscous incompressible flow of fluid with free surface, In Phys. Fluids, 8, pp. 2182-2189, 1965.
4. M. B. Martell, J. B. Perot, J. P. Rothstein, Direct numerical simulations of turbulent flows over superhydrophobic surfaces, In J. Fluid Mech., 620, pp. 31-41, 2009.
5. R. B. Dean, Reynolds number dependence of skin friction and other bulk flow variables in two-dimensional rectangular duct flow, In J. Fluid Engineering, 100, 2, pp. 215-223, 1978.
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