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Wall-bounded turbulent flows at high Reynolds numbers: Recent advances and key issues

Physics of Fluids · 2010 · Vol. 22(6)
Ivan MarušičBeverley McKeonPeter A. MonkewitzHassan NagibA. J. SmitsKatepalli R. Sreenivasan

Abstract

Wall-bounded turbulent flows at high Reynolds numbers have become an increasingly active area of research in recent years. Many challenges remain in theory, scaling, physical understanding, experimental techniques, and numerical simulations. In this paper we distill the salient advances of recent origin, particularly those that challenge textbook orthodoxy. Some of the outstanding questions, such as the extent of the logarithmic overlap layer, the universality or otherwise of the principal model parameters such as the von Kármán “constant,” the parametrization of roughness effects, and the scaling of mean flow and Reynolds stresses, are highlighted. Research avenues that may provide answers to these questions, notably the improvement of measuring techniques and the construction of new facilities, are identified. We also highlight aspects where differences of opinion persist, with the expectation that this discussion might mark the beginning of their resolution.

Fluid Dynamics and Turbulent FlowsWind and Air Flow StudiesPlant Water Relations and Carbon DynamicsReynolds numberPhysicsSalientTurbulenceScalingUniversality (dynamical systems)Bounded functionStatistical physicsReynolds stress equation modelParametrization (atmospheric modeling)
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References
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Journal of the Franklin Institute · 1956 · 3,783 citations
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Physics of Fluids · 1999 · 862 citations
Vortex organization in the outer region of the turbulent boundary layer
Journal of Fluid Mechanics · 2000 · 1,661 citations
Hairpin vortex organization in wall turbulence
Physics of Fluids · 2007 · 1,235 citations
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