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Enstrophy dissipation and vortex thinning for the incompressible 2D Navier-Stokes equations

Published 24 Dec 2019 in math.AP and physics.flu-dyn | (1912.11479v2)

Abstract: By direct numerical simulation to the two-dimensional Navier-Stokes equations with small-scale forcing and large-scale damping, Xiao-Wan-Chen-Eyink (2009) found an evidence that inverse energy cascade may proceed with the vortex thinning mechanism. On the other hand, Alexakis-Doering (2006) calculated upper bound of the bulk averaged enstrophy dissipation rate of the steady-state two dimensional turbulence. {In this paper, we show that vortex thinning induces enhanced dissipation with strictly slower vanishing order of the enstrophy dissipation than $Re{-1}$.}

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