Linear stability analysis of purely elastic travelling wave solutions in pressure driven channel flows
Abstract
Recent studies of pressure-driven flows of dilute polymer solutions in straight channels demonstrated the existence of two-dimensional coherent structures that are disconnected from the laminar state and appear through a sub-critical bifurcation from infinity. These travelling-wave solutions were suggested to organise the phase-space dynamics of purely elastic and elasto-inertial chaotic channel flows. Here, we consider a wide range of parameters, covering the purely-elastic and elasto-inertial cases, and demonstrate that the two-dimensional travelling-wave solutions are unstable when embedded in sufficiently wide three-dimensional domains. Our work demonstrates that studies of purely elastic and elasto-inertial turbulence in straight channels require three-dimensional simulations, and no reliable conclusions can be drawn from studying strictly two-dimensional channel flows.
Keywords
Cite
@article{arxiv.2211.09063,
title = {Linear stability analysis of purely elastic travelling wave solutions in pressure driven channel flows},
author = {Martin Lellep and Moritz Linkmann and Alexander Morozov},
journal= {arXiv preprint arXiv:2211.09063},
year = {2023}
}
Comments
10 pages, 5 pages