Pressure–strain terms in Langmuir turbulence

Full text not archived in this repository.

Please see our End User Agreement.

It is advisable to refer to the publisher's version if you intend to cite from this work. See Guidance on citing.

Add to AnyAdd to TwitterAdd to FacebookAdd to LinkedinAdd to PinterestAdd to Email

Pearson, B. C., Grant, A. L. M. and Polton, J. A. (2019) Pressure–strain terms in Langmuir turbulence. Journal Of Fluid Mechanics, 880. pp. 5-31. ISSN 0022-1120 doi: 10.1017/jfm.2019.701

Abstract/Summary

This study investigates the pressure–strain tensor (II) in Langmuir turbulence. The pressure–strain tensor is determined from large-eddy simulations (LES), and is partitioned into components associated with the mean current shear (rapid), the Stokes shear and the turbulent–turbulent (slow) interactions. The rapid component can be parameterized using existing closure models, although the coefficients in the closure models are particular to Langmuir turbulence. A closure model for the Stokes component is proposed, and it is shown to agree with results from the LES. The slow component of II does not agree with existing ‘return-to-isotropy’ closure models for five of the six components of the Reynolds stress tensor, and a new closure model is proposed that accounts for these deviations which vary systematically with Langmuir number, Lat, and depth. The implications of these results for second- and first-order closures of Langmuir turbulence are discussed.

Altmetric Badge

Item Type Article
URI https://reading-clone.eprints-hosting.org/id/eprint/90175
Identification Number/DOI 10.1017/jfm.2019.701
Refereed Yes
Divisions Science > School of Mathematical, Physical and Computational Sciences > Department of Meteorology
Publisher Cambridge University Press
Download/View statistics View download statistics for this item

University Staff: Request a correction | Centaur Editors: Update this record

Search Google Scholar