Mechanism of stochastic resonance in viscoelastic channel flow
Abstract
We have recently discovered stochastic resonance (SR) in chaotic inertia-less viscoelastic channel flow. SR appears just above a pure elastic instability at a critical Weissenberg number, , of a transition regime. In this lower sub-region up to , only the streamwise velocity, , exhibits a chaotic spectrum, , while the spanwise velocity continues to exhibit white noise, verified by its flat spectrum, , accompanied by weak intensity elastic waves. However, SR vanishes at the upper limit at , when becomes chaotic, indicating as the control parameter. Here we clarify the mechanism of SR emergence by validating the control parameters, namely and the rms velocity fluctuations, , measured at multiple channel locations, which determine the range of SR existence. Our experiments verify three key ingredients of the SR mechanism: chaotic , white noise , and weak elastic waves, which are consistent with three constituents of autonomous dynamical systems exhibiting SR.
Keywords
Cite
@article{arxiv.2312.10288,
title = {Mechanism of stochastic resonance in viscoelastic channel flow},
author = {Yuke Li and Victor Steinberg},
journal= {arXiv preprint arXiv:2312.10288},
year = {2024}
}
Comments
5 pages, 4 figures