The Batchelor-Howells-Townsend spectrum: large velocity case
Analysis of PDEs
2023-12-21 v1 Fluid Dynamics
Abstract
We consider the behaviour of a passive tracer governed by in two space dimensions with prescribed smooth random incompressible velocity and source . In 1959, Batchelor, Howells and Townsend (J.\ Fluid Mech.\ 5:113) predicted that the tracer (power) spectrum should then scale as for large depending on the velocity . For smaller , Obukhov and Corrsin earlier predicted a different spectral scaling. In this paper, we prove that the BHT scaling does indeed hold probabilistically for sufficiently large , asymptotically up to controlled remainders, using only bounds on the smaller component.
Cite
@article{arxiv.2312.12662,
title = {The Batchelor-Howells-Townsend spectrum: large velocity case},
author = {Michael S. Jolly and Djoko Wirosoetisno},
journal= {arXiv preprint arXiv:2312.12662},
year = {2023}
}
Comments
23 pages, 1 figure