Symmetry breaking perturbative flows to retrieve resonant modes in plane shear layers
Fluid Dynamics
2020-05-04 v2
Abstract
We propose a simple computational procedure in order to resolve the degeneracy, which invariably exists on the background of fluid motion associated with a channel of infinite extent. The procedure is applied to elucidate the bifurcation structure for the particular case of laterally heated flow with the addition of a perturbative Poiseuille flow component. The introduction of a symmetry breaking perturbation as the simplest imperfection alters the bifurcation tree of the original shear flow. As a result, the previously unknown higher order nonlinear solutions for the unperturbed flow are discovered, without implementing classical stability theory.
Keywords
Cite
@article{arxiv.1503.02625,
title = {Symmetry breaking perturbative flows to retrieve resonant modes in plane shear layers},
author = {Takeshi Akinaga and Tomoaki Itano and Sotos Generalis},
journal= {arXiv preprint arXiv:1503.02625},
year = {2020}
}
Comments
Significant overlap with new manuscript