Structure function of passive scalars in two-dimensional turbulence
Abstract
The structure function of a scalar , passively advected in a two-dimensional turbulent flow , is discussed by means of the fractal dimension of the passive scalar graph. A relation between , the scaling exponent of the scalar structure function , and the structure function D_2(r) of the underlying flow field is derived. Different from the 3-d case, the 2-d structure function also depends on an additional parameter, characteristic of the driving of the passive scalar. In the enstrophy inertial subrange a mean field approximation for the velocity structure function gives a scaling of the passive scalar graph with for intermediate and large values of the Prandtl number Pr. In the energy inertial subrange a model for the energy spectrum and thus D_2(r) gives a passive scalar graph scaling with exponent . Finally, we discuss an application to recent observations of scalar dispersion in non-universal 2-d flows.
Keywords
Cite
@article{arxiv.chao-dyn/9904024,
title = {Structure function of passive scalars in two-dimensional turbulence},
author = {Bruno Eckhardt and Joerg Schumacher},
journal= {arXiv preprint arXiv:chao-dyn/9904024},
year = {2009}
}
Comments
9 pages, 8 figures