arXiv · chao-dyn/9912033
Longitudinal Structure Functions in Decaying and Forced Turbulence
Abstract
In order to reliably compute the longitudinal structure functions in decaying and forced turbulence, local isotropy is examined with the aid of the isotropic expression of the incompressible conditions for the second and third order structure functions. Furthermore, the Karman-Howarth-Kolmogorov relation is investigated to examine the effects of external forcing and temporally decreasing of the second order structure function. On the basis of these investigations, the scaling range and exponents $ζ_n$ of the longitudinal structure functions are determined for decaying and forced turbulence with the aid of the extended-self-similarity (ESS) method. We find that $ζ_n$'s are smaller, for $n \geq 4$, in decaying turbulence than in forced turbulence. The reasons for this discrepancy are discussed. Analysis of the local slopes of the structure functions is used to justify the ESS method.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Daigen Fukayama, Toshihiro Oyamada, Tohru Nakano, Toshiyuki Gotoh, Kiyoshi Yamamoto. 2000-01-11. Longitudinal Structure Functions in Decaying and Forced Turbulence. https://doi.org/10.1143/jpsj.69.701
Cite the original work for its findings. Save a collection to share your selection of sources.