arXiv · physics/0104055
Anomalous self-similarity in two-dimensional turbulence
Abstract
Our velocity measurements on a quasi-two-dimensional turbulent flow in a rapidly rotating annulus yield an inverse cascade with E(k)~k^{-2} rather than the expected E(k)~k^{-5/3}. The probability distribution functions for longitudinal velocity differences, δ_v(r)=v(x+r)-v(x), are self-similar (scale independent) but strongly non-Gaussian, which suggests that the coherent vortices play a significant role. The structure functions, <[δ_v(r)]^p>~r^{ζ_p}, exhibit anomalous scaling: ζ_p=p/2 rather than ζ_p=p/3 as in the 1941 Kolmogorov theory.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Charles N. Baroud, Brendan B. Plapp, Zhen-Su She, Harry L. Swinney. 2001-07-27. Anomalous self-similarity in two-dimensional turbulence. https://arxiv.org/abs/physics/0104055
Cite the original work for its findings. Save a collection to share your selection of sources.