Turbulent Relative Dispersion in Two-Dimensional Free Convection Turbulence
Abstract
The relative dispersion process in two-dimensional free convection turbulence is investigated by direct numerical simulation. In the inertial range, the growth of relative separation, , is expected as according to the Bolgiano-Obukhov scaling. The result supporting the scaling is obtained with exit-time statistics. Detailed investigation of exit-time PDF shows that the PDF is divided into two regions, the Region-I and -II, reflecting two types of separating processes: persistent expansion and random transitions between expansion and compression of relative separation. This is consistent with the physical picture of the self-similar telegraph model. In addition, a method for estimating the parameters of the model are presented. Comparing two turbulence cases, two-dimensional free convection and inverse cascade turbulence, the relation between the drift term of the model and nature of coherent structures is discussed.
Keywords
Cite
@article{arxiv.nlin/0603036,
title = {Turbulent Relative Dispersion in Two-Dimensional Free Convection Turbulence},
author = {Takeshi Ogasawara and Sadayoshi Toh},
journal= {arXiv preprint arXiv:nlin/0603036},
year = {2009}
}
Comments
13 pages, 21 figures