Scinovex
articleTop 1% cited

One-point statistics for turbulent wall-bounded flows at Reynolds numbers up to δ+ ≈ 2000

Physics of Fluids · 2013 · Vol. 25(10)
Juan A. SilleroJavier JiménezRobert Moser

Abstract

One-point statistics are presented for new direct simulations of the zero-pressure-gradient turbulent boundary layer in the range Reθ = 2780–6680, matching channels and pipes at δ+ ≈ 1000–2000. For tripped boundary layers, it is found that the eddy-turnover length is a better criterion than the Reynolds number for the recovery of the largest flow scales after an artificial inflow. Beyond that limit, the integral parameters, mean velocities, Reynolds stresses, and pressure fluctuations of the new simulations agree very well with the available numerical and experimental data, but show clear differences with internal flows when expressed in wall units at the same wall distance and Reynolds number. Those differences are largest in the outer layer, independent of the Reynolds number, and apply to the three velocity components. The logarithmic increase with the Reynolds number of the maximum of the streamwise velocity and pressure fluctuations is confirmed to apply to experimental and numerical internal and external flows. The new simulations also extend to a wider range of Reynolds numbers, and to more than a decade in wall distance, the evidence for logarithmic intensity profiles of the spanwise velocity and of the pressure intensities. Streamwise velocity fluctuations appear to require higher Reynolds numbers to develop a clear logarithmic profile, but it is argued that the comparison of the available near-wall data with fluctuation profiles experimentally obtained by other groups at higher Reynolds numbers can only be explained by assuming the existence of a mesolayer for the fluctuations. The statistics of the new simulation are available in our website.

Fluid Dynamics and Turbulent FlowsWind and Air Flow StudiesAerodynamics and Acoustics in Jet FlowsReynolds numberPhysicsTurbulenceBoundary layerMechanicsReynolds stress equation modelDirect numerical simulationMagnetic Reynolds numberReynolds stressBoundary layer thickness
Citations
425
FWCI
23.72
field-weighted impact
References
82
Percentile
100%
vs. same field & year
Citations per year
References
The law of the wake in the turbulent boundary layer
Journal of Fluid Mechanics · 1956 · 1,651 citations
Application of a fractional-step method to incompressible Navier-Stokes equations
Journal of Computational Physics · 1985 · 3,016 citations
Generation of Turbulent Inflow Data for Spatially-Developing Boundary Layer Simulations
Journal of Computational Physics · 1998 · 1,483 citations
Turbulence statistics in fully developed channel flow at low Reynolds number
Journal of Fluid Mechanics · 1987 · 4,721 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

One-point statistics for turbulent wall-bounded flows at Reynolds numbers up to δ+ ≈ 2000 · Scinovex