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Updated: May 30, 2026

Methods for Measuring the Orientation and Rotation Rate of 3D-printed Particles in Turbulence
Published on: June 24, 2016
Direct measurements of anisotropic energy transfers in a rotating turbulence experiment
Cyril Lamriben1, Pierre-Philippe Cortet, Frédéric Moisy
1Laboratoire FAST, CNRS, Univ Paris-Sud, UPMC Univ Paris 06, Bâtiment 502, Campus universitaire, 91405 Orsay, France.
Abstract:
We investigate experimentally the influence of a background rotation on the energy transfers in decaying grid turbulence. The anisotropic energy flux density F(r) = <δu(δu)²>, where δu is the vector velocity increment over separation r, is determined for the first time by using particle image velocimetry. We show that rotation induces an anisotropy of the energy flux ∇·F, which leads to an anisotropy growth of the energy distribution E(r) = <(δu)²>, in agreement with the von 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 F(r).

