paper

Direct measurements of anisotropic energy transfers in a rotating turbulence experiment

arXiv:1106.4683 · doi:10.1103/PhysRevLett.107.024503

Abstract

We investigate experimentally the influence of a background rotation on the energy transfers in decaying grid turbulence. The anisotropic energy flux density, , where is the vector velocity increment over separation , is determined for the first time using Particle Image Velocimetry. We show that rotation induces an anisotropy of the energy flux , which leads to an anisotropy growth of the energy distribution , in agreement with the Kármán-Howarth-Monin equation. Surprisingly, our results prove that this anisotropy growth is essentially driven by a nearly radial, but orientation-dependent, energy flux density .

to appear in Physical Review Letters (July 8, 2011 issue)

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