Physics of Fluids · 2004 · 78 citations · 27 references
Numerical AnalysisAeroacousticsTotal EnergyEngineeringTurbulenceWind EngineeringAtmospheric ScienceNumerical SimulationMagnetohydrodynamicsComputational ElectromagneticsComputational GeophysicsLarge Eddy SimulationSpace-time CorrelationsMeteorologySpace-time SimulationTurbulent FlameTime CorrelationsAerospace EngineeringEnergy CascadeTurbulence ModelingAerodynamicsCorrelation FunctionsMultiscale Modeling
The effect of subgrid-scale (SGS) modeling on velocity (space-) time correlations is investigated in decaying isotropic turbulence. The performance of several SGS models is evaluated, which shows superiority of the dynamic Smagorinsky model used in conjunction with the multiscale large-eddy simulation (LES) procedure. Compared to the results of direct numerical simulation, LES is shown to underpredict the (un-normalized) correlation magnitude and slightly overpredict the decorrelation time scales. This can lead to inaccurate solutions in applications such as aeroacoustics. The underprediction of correlation functions is particularly severe for higher wavenumber modes which are swept by the most energetic modes. The classic sweeping hypothesis for stationary turbulence is generalized for decaying turbulence and used to analyze the observed discrepancies. Based on this analysis, the time correlations are determined by the wavenumber energy spectra and the sweeping velocity, which is the square root of the total energy. Hence, an accurate prediction of the instantaneous energy spectra is most critical to the accurate computation of time correlations.
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GENERAL CIRCULATION EXPERIMENTS WITH THE PRIMITIVE EQUATIONS
Joseph Smagorinsky · Monthly Weather Review · 1963 · 13.6K citations
A dynamic subgrid-scale eddy viscosity model
Massimo Germano, Ugo Piomelli, Parviz Moin et al. · Physics of Fluids A Fluid Dynamics · 1991 · 7K citations
Particles and fields in fluid turbulence
Gregory Falkovich, Krzysztof Gawędzki, Massimo Vergassola · Reviews of Modern Physics · 2001 · 1.2K citations · Full text
Engineering, Physics, Energy Cascade +11