Structured input-output analysis of stably stratified plane Couette flow
Abstract
We employ a recently introduced structured input-output analysis (SIOA) approach to analyze streamwise and spanwise wavelengths of flow structures in stably stratified plane Couette flow. In the low-Reynolds number () low-bulk Richardson number () spatially intermittent regime, we demonstrate that SIOA predicts high amplification associated with wavelengths corresponding to the characteristic oblique turbulent bands in this regime. SIOA also identifies quasi-horizontal flow structures resembling the turbulent-laminar layers commonly observed in the high- high- intermittent regime. An SIOA across a range of and values suggests that the classical Miles-Howard stability criterion () is associated with a change in the most amplified flow structures when Prandtl number is close to one (). However, for , the most amplified flow structures are determined by the product . For , SIOA identifies another quasi-horizontal flow structure that we show is principally associated with density perturbations. We further demonstrate the dominance of this density-associated flow structure in the high limit by constructing analytical scaling arguments for the amplification in terms of and under the assumptions of unstratified flow (with ) and streamwise invariance.
Cite
@article{arxiv.2207.12605,
title = {Structured input-output analysis of stably stratified plane Couette flow},
author = {Chang Liu and Colm-cille P. Caulfield and Dennice F. Gayme},
journal= {arXiv preprint arXiv:2207.12605},
year = {2022}
}
Comments
27 pages, 12 figures