arXiv · chao-dyn/9401005
Crossover from high to low Reynolds number turbulence
Abstract
The Taylor-Reynolds and Reynolds number ($Re_λ$ and $Re$) dependence of the dimensionless energy dissipation rate $\ceps =\eps L / \u1rms^3$ is derived for statistically stationary isotropic turbulence, employing the results of a variable range mean field theory. Here, $\eps$ is the energy dissipation rate, $L$ is the (fixed) outer length scale, and $\u1rms$ a rms velocity component. Our fit-parameter free results for $\ceps (Re_λ)$ and also for $Re_λ(Re)$ are in good agreement with experimental data. Using the $Re$-dependence of $\ceps$ we account for the time dependence of the mean vorticity $ω(t)$ for decaying isotropic turbulence, which was recently experimentally examined [M.\ Smith, R.\ J.\ Donelly, N.\ Goldenfeld, and W.\ F.\ Vinen, Phys.\ Rev.\ Lett.\ 71, 2583 (1993)]. The lifetime of decaying turbulence, depending on the initial $Re_{λ,0}$, is predicted and found to saturate at $0.18 L^2/ν\propto Re_{λ,0}^2$ ($ν$ is the viscosity) for large $Re_{λ,0}$.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Detlef Lohse. 1994-01-18. Crossover from high to low Reynolds number turbulence. https://doi.org/10.1103/physrevlett.73.3223
Cite the original work for its findings. Save a collection to share your selection of sources.