Critical-layer structures and mechanisms in elastoinertial turbulence
Fluid Dynamics
2019-04-08 v4
Abstract
Simulations of elastoinertial turbulence (EIT) of a polymer solution at low Reynolds number are shown to display localized polymer stretch fluctuations. These are very similar to structures arising from linear stability (Tollmien-Schlichting (TS) modes) and resolvent analyses: i.e., critical-layer structures localized where the mean fluid velocity equals the wavespeed. Computation of self-sustained nonlinear TS waves reveals that the critical layer exhibits stagnation points that generate sheets of large polymer stretch. These kinematics may be the genesis of similar structures in EIT.
Keywords
Cite
@article{arxiv.1811.00524,
title = {Critical-layer structures and mechanisms in elastoinertial turbulence},
author = {Ashwin Shekar and Ryan M. McMullen and Sung-Ning Wang and Beverley J. McKeon and Michael D. Graham},
journal= {arXiv preprint arXiv:1811.00524},
year = {2019}
}
Comments
5 pages, 4 figures; Accepted in Physical Review Letters