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Effect of the computational domain on direct simulations of turbulent channels up to <i>Re</i>τ = 4200

Physics of Fluids · 2014 · Vol. 26(1)
Adrián Lozano-DuránJavier Jiménez

Abstract

The effect of domain size on direct numerical simulations of turbulent channels with periodic boundary conditions is studied. New simulations are presented up to Reτ = 4179 in boxes with streamwise and spanwise sizes of 2πh × πh, where h is the channel half-height. It is found that this domain is large enough to reproduce the one-point statistics of larger boxes. A simulation in a box of size 60πh × 6πh is used to show that a contour of the two-dimensional premultiplied spectrum of the streamwise velocity containing 80% of the kinetic energy closes at λx ≈ 100h.

Fluid Dynamics and Turbulent FlowsHeat Transfer MechanismsCombustion and flame dynamicsPhysicsTurbulenceDirect numerical simulationDomain (mathematical analysis)Kinetic energyStatistical physicsMechanicsChannel (broadcasting)Boundary (topology)Periodic boundary conditions
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References
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Very large-scale motion in the outer layer
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Compact finite difference schemes with spectral-like resolution
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Turbulence statistics in fully developed channel flow at low Reynolds number
Journal of Fluid Mechanics · 1987 · 4,721 citations
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