Physical Review Letters · 2008 · 54 citations · 16 references
AeroacousticsVortex DynamicsEngineeringVortex FlowsPhysicsNatural SciencesFluid MechanicsTurbulence ModelingTurbulenceTemporal ScalingAerodynamicsScaling TheoryVortex DynamicTemporal Scaling TheoriesMultiscale Modeling
We present a scaling theory for unforced inviscid two-dimensional turbulence. Our model unifies existing spatial and temporal scaling theories. The theory is based on a self-similar distribution of vortices of different sizes A. Our model uniquely determines the spatial and temporal scaling of the associated vortex number density which allows the determination of the energy spectra and the vortex distributions. We find that the vortex number density scales as n(A,t)-t(-2/3)/A, which implies an energy spectrum E-k(-5), significantly steeper than the classical Batchelor-Kraichnan scaling. High-resolution numerical simulations corroborate the model.
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Inertial Ranges in Two-Dimensional Turbulence
Robert H. Kraichnan · The Physics of Fluids · 1967 · 3.1K citations
Unsteady Flow, Engineering, Physics +11
Turbulence: an introduction for scientists and engineers
Choice Reviews Online · 2005 · 1.1K citations