2016eScholarship (California Digital Library)Open access

Turbulence, mixing and Prandtl number effects in stratified plane Couette flows

Qi Zhou, John R. Taylor, C. P. Caulfield

Open full text 0 citations

Abstract

We report direct numerical simulations (DNS) of stratified plane Couette (SPC) flows in both continuous and layered stratifications for a wide range of Prandtl number Pr from 0.7, 7 to 70.In the continuously stratified set-up, Pr has a significant impact on the momentum and heat fluxes across the flow.Variations of these fluxes then modifies the turbulence characteristics in the way that is consistent with Monin-Okukhov (M-O) similarity theory.The mixing properties in the interior of the flow, however, appear to be independent of Pr .We employ M-O theory and the Osborn (1980) model to formulate scalings for the turbulent diffusivities.These scalings are then verified by DNS and discussed with respect to existing scalings in the literature.In the layered configuration, we investigate the transient mixing of a density interface, where the variation of Pr indeed becomes important.

Open-access reader

About this research paper

What this paper is about

We report direct numerical simulations (DNS) of stratified plane Couette (SPC) flows in both continuous and layered stratifications for a wide range of Prandtl number Pr from 0.7, 7 to 70.In the continuously stratified set-up, Pr has a significant impact on the momentum and heat fluxes across the flow.Variations of these fluxes then modifies the turbulence characteristics in the way that is consistent with Monin-Okukhov (M-O) similarity theory.The mixing properties in the interior of the flow, however, appear to be independent of Pr .We employ M-O theory and the Osborn (1980) model to formulate scalings for the turbulent diffusivities.These scalings are then verified by DNS and discussed with respect to existing scalings in the literature.In the layered configuration, we investigate the transient mixing of a density interface, where the variation of Pr indeed becomes important.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We report direct numerical simulations (DNS) of stratified plane Couette (SPC) flows in both continuous and layered stratifications for a wide range of Prandtl number Pr from 0.7, 7 to 70.In the continuously stratified set-up, Pr has a significant impact on the momentum and heat fluxes across the flow.Variations of these fluxes then modifies the turbulence characteristics in the way that is consistent with Monin-Okukhov (M-O) similarity theory.The mixing properties in the interior of the flow, however, appear to be independent of Pr .We employ M-O theory and the Osborn (1980) model to formulate scalings for the turbulent diffusivities.These scalings are then verified by DNS and discussed with respect to existing scalings in the literature.In the layered configuration, we investigate the transient mixing of a density interface, where the variation of Pr indeed becomes important.

Key concepts: Prandtl number, Turbulence, Couette flow, Turbulent Prandtl number, Taylor–Couette flow, Physics, Momentum (technical analysis), Mechanics

Related papers

Back to paper searchBrowse research topicsOriginal source
Turbulence, mixing and Prandtl number effects in stratified plane Couette flows — Research Paper | ScholarLens