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Turbulence statistics in fully developed channel flow at low Reynolds number

Journal of Fluid Mechanics · 1987 · Vol. 177 · pp. 133–166
John KimParviz MoinRobert Moser

Abstract

A direct numerical simulation of a turbulent channel flow is performed. The unsteady Navier-Stokes equations are solved numerically at a Reynolds number of 3300, based on the mean centreline velocity and channel half-width, with about 4 × 10 6 grid points (192 × 129 × 160 in x, y, z ). All essential turbulence scales are resolved on the computational grid and no subgrid model is used. A large number of turbulence statistics are computed and compared with the existing experimental data at comparable Reynolds numbers. Agreements as well as discrepancies are discussed in detail. Particular attention is given to the behaviour of turbulence correlations near the wall. In addition, a number of statistical correlations which are complementary to the existing experimental data are reported for the first time.

Fluid Dynamics and Turbulent FlowsHeat Transfer MechanismsFluid Dynamics and Vibration AnalysisTurbulenceReynolds numberReynolds stress equation modelReynolds decompositionK-epsilon turbulence modelPhysicsMechanicsStatistical physicsReynolds-averaged Navier–Stokes equationsK-omega turbulence model
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References
Numerical investigation of turbulent channel flow
Journal of Fluid Mechanics · 1982 · 1,169 citations
The production of turbulence near a smooth wall in a turbulent boundary layer
Journal of Fluid Mechanics · 1971 · 1,056 citations
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