Publications des scientifiques de l'IRD

Desbiolles F., Meroni A. N., Renault Lionel, Pasquero L. (2023). Environmental control of wind response to sea surface temperature patterns in reanalysis dataset. Journal of Climate, 36 (12), p. 203731 [13 p.]. ISSN 0894-8755.

Titre du document
Environmental control of wind response to sea surface temperature patterns in reanalysis dataset
Année de publication
2023
Type de document
Article référencé dans le Web of Science WOS:000995679900001
Auteurs
Desbiolles F., Meroni A. N., Renault Lionel, Pasquero L.
Source
Journal of Climate, 2023, 36 (12), p. 203731 [13 p.] ISSN 0894-8755
Sea surface temperature (SST) is characterized by abundant warm and cold structures that influence the overlying atmospheric boundary layer dynamics through two different mechanisms. First, turbulence and large eddies in the lower troposphere are affected by atmospheric stability, which can be modified by local SST, resulting in enhanced ver-tical mixing and larger surface winds over warmer waters. Second, the thermodynamic adjustment of air density to the un-derlying SST structures and the subsequent changes in atmospheric pressure drive secondary circulations. This paper aims to disentangle the effects of these processes and explore the environmental conditions that favor them. Two main environ-mental variables are considered: the large-scale air-sea temperature difference (proxy for stability) and wind speed. Using 5 years of daily reanalyses data, we investigate the 10-m wind response to SST structures. Based on linear regression be-tween wind divergence and SST derivatives, we show that both mechanisms operate over a large spectrum of conditions. Ten-meter wind divergence is strongly impacted by the local SST via its effect on vertical mixing for midwind regimes in slightly unstable to near-neutral conditions, whereas the secondary circulation is important in two distinct regimes: low wind speed with a slightly unstable air column and high background wind speed with a very unstable air column. The first regime is explained by the prolonged Lagrangian time that the air parcel stays over an SST structure while the second one is related to strong heat fluxes at the air-sea interface, which greatly modify the marine atmospheric boundary layer prop-erties. Location and frequency of the environmentally favorable conditions are discussed, as well as the response in low -cloud cover and rainfall.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Sciences du milieu [021] ; Limnologie physique / Océanographie physique [032]
Localisation
Fonds IRD [F B010088056]
Identifiant IRD
fdi:010088056
Contact