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Actes - Climato.be

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25 ème Colloque de l’Association Internationale de <strong>Climato</strong>logie, Grenoble 2012vent côtier. Cependant des études réalisées dans d'autres systèmes d'upwelling ont montré quela structure des vents côtiers dépend non seulement de la structure de la SST mais égalementde l'orographie côtière (Perlin et al., 2007 ; Boé et al., 2011).Remerciements : Cette étude a été réalisée avec le soutien de l'Institut de Recherche pour leDéveloppement (IRD), le Ministère Sénégalais de la Recherche Scientifique et Technique àtravers le Fonds d'Impulsion de la Recherche Scientifique et Technique (FIRST). Nosremerciements vont aussi à la NASA pour la production des données MODIS, à DominiqueDagorne de l'US IMAGO/IRD pour l'extraction des données satellitaires et à Claude Roy(LPO) pour la relecture du manuscrit.Références bibliographiquesBoé J., A. Hall, F. Colas, J. C. McWilliams, X. Qu, J. Kurian and S. B. Kapnick, 2011 : What shapes mesoscalewind anomalies in coastal upwelling zones? Clim. Dyn., 36, 2037-2049, DOI 10.1007/s00382-011-1058-5.Chelton D. B., 2005 : The impact of sst specification on ECMWF surface wind stress fields in the EasternTropical Pacific. J. Clim., 18, 530-550.Debreu L., P. Marchesiello, P. Penven and G. Cambon, 2012 : Two-way nesting in split-explicit ocean models:algorithms, implementation and validation. Ocean Modelling, in press.Friehe C.A., W. J. Shaw, D. P. Rogers, K. L. Davidson, W. G. Large, S. A. Stage, G. H. Crescenti, S. Khalsa, G.K. Greenhut and F. Li, 1991 : Air-sea fluxes and surface layer turbulence around a sea surface temperature front.J. Geophys. Res., 96, 8593-8609.Giordani H., S. Planton, B. Benech, and B.-H. Kwon, 1998 : Atmospheric boundary layer response to sea surfacetemperatures during the SEMAPHORE experiment. J. Geophys. Res., 103, 25,047-25,060.O’Neill L. W., D. B. Chelton, S. K. Es<strong>be</strong>nsen and F. J. Wentz, 2005 : High-resolution satellite measurements ofthe atmospheric boundary layer response to SST variations along the Agulhas Return Current. J. Clim., 18,2706-2723.O'Neil L., D. Chelton and S. Es<strong>be</strong>nsen, 2003 : Observations of SST-induced perturbations of the wind stressfield over the Southern Ocean on seasonal timescales. J. Climate, 16, 2340-2354.Park K.-A. and P. Cornillon, 2002 : Stability-induced modification of sea surface winds over Gulf Stream rings.Geophys. Res. Lett., 29(24), 2211, doi:10.1029/2001GL014236.Penven P., L. Debreu, P. Marchesiello, and J.C. McWilliams, 2006 : Evaluation and application of the ROMS 1-way em<strong>be</strong>dding procedure to the central california upwelling system. Ocean Modeling, 12, 157-187.Perlin N., Skyllingstad E.D., Samelson R.M., Barbour P.L., 2007 : Numerical simulation of air-sea couplingduring coastal upwelling. J. Phys. Oceanogr., 37, 2081-2093.Reynolds R. W. and T. M. Smith, 1995 : A high resolution global sea surface temperature climatology. J.Climate, 8, 1571-1583.Shchepetkin A. F., J. C. McWilliams, 2005 : The regional oceanic modeling system (ROMS): a split-explicit,free-surface, topography-following-coordinate oceanic model. Ocean Modeling, 9, 347-404.Skamarock W. C., J. B. Klemp, J. Dudhia, D. O. Gill, D. M. Barker, W. Wang and J. G. Powers, 2007 : Adescription of the advanced research WRF version 2. NCAR/TN-468STR, NCAR technical note, 88 pp.Small R.J., S.P. deSzoeke, S.P. Xie, L. O’Neill, H. Seo, Q. Song, P. Cornillon, M. Spall, S. Mino<strong>be</strong>, 2008 : Air–sea interaction over ocean fronts and eddies. Dynamics of Atmospheres and Oceans, 45, 274-319.726

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