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On the Impact of Long Wind-Waves on Near-Surface Turbulence and Momentum Fluxes

  • A. Ayet
  • , B. Chapron
  • , J. L. Redelsperger
  • , G. Lapeyre
  • , L. Marié
  • Université de Brest (UBO)
  • PSL research University & IPSL

Research output: Contribution to journalArticlepeer-review

Abstract

We propose a new phenomenological model to represent the impact of wind-waves on the dissipation of turbulence kinetic energy near the sea surface. In this model, the momentum flux at a given height results from the averaged contribution of eddies attached to the sea surface whose sizes are related to the surface geometry. This yields a coupling between long wind-waves and turbulence at heights of about 10 m. This new wind-and-waves coupling is thus not exclusively confined to the short wave range and heights below 5 m, where most of the momentum transfer to the waves is known to occur. The proposed framework clarifies the impact of wind-waves on Monin–Obukhov similarity theory, and the role of long wind-waves on the observed wind-wave variability of momentum fluxes. This work reveals which state variables related to the wind-wave coupling require more accurate measurements to further improve wind-over-waves models and parametrizations.

Original languageEnglish
Pages (from-to)465-491
Number of pages27
JournalBoundary-Layer Meteorology
Volume174
Issue number3
DOIs
Publication statusPublished - 1 Mar 2020

Keywords

  • Air–sea fluxes
  • Wall-bounded turbulence
  • Wave boundary layer
  • Wind stress
  • Wind-waves

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