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branches/bibliolocean/data/biblioref.bib
r296 r297 3 3 4 4 @PREAMBLE{"Bibliographie du LOCEAN"} 5 6 @article{VialardDrushkaEtAl:CD:2012, 7 hal_id = {hal-00768505}, 8 loceanaffectation = {ird}, 9 loceanbibid = {01923}, 10 loceanteam = {varclim}, 11 timestamp = {20121221}, 12 title = {{Understanding Madden-Julian-Induced sea surface temperature variations in the North Western Australian Basin}}, 13 author = {{J}érôme Vialard and K. Drushka and Hugo Bellenger and Matthieu Lengaigne and Stéphane Pous and Jean-Philippe Duvel}, 14 abstract = {{The strongest large-scale intraseasonal (30-110 day) sea surface temperature (SST) variations in austral summer in the tropics are found in the eastern Indian Ocean between Australia and Indonesia (North-Western Australian Basin, or NWAB). TMI and Argo observations indicate that the temperature signal (std. \~0.4 \degreC) is most prominent within the top 20 m. This temperature signal appears as a standing oscillation with a 40-50 day timescale within the NWAB, associated with \~40 Wm-2 net heat fluxes (primarily shortwave and latent) and \~0.02 Nm-2 wind stress perturbations. This signal is largely related to the Madden-Julian Oscillation. A slab ocean model with climatological observed mixed-layer depth and an ocean general circulation model both accurately reproduce the observed intraseasonal SST oscillations in the NWAB. Both indicate that most of the intraseasonal SST variations in the NWAB in austral winter are related to surface heat flux forcing, and that intraseasonal SST variations are largest in austral summer because the mixed-layer is shallow (\~20 m) and thus more responsive during that season. The general circulation model indicates that entrainment cooling plays little role in intraseasonal SST variations. The larger intraseasonal SST variations in the NWAB as compared to the widely-studied thermocline-ridge of the Indian Ocean region is explained by the larger convective and air-sea heat flux perturbations in the NWAB.}}, 15 keywords = {Madden-Julian Oscillation;Air-sea interactions;Intraseasonal variations;Ocean mixed layer;Air-sea fluxes;}, 16 language = {Anglais}, 17 affiliation = {Laboratoire d'Oc{\'e}anographie et du Climat : Exp{\'e}rimentations et Approches Num{\'e}riques - LOCEAN , Laboratoire de M{\'e}t{\'e}orologie Dynamique - LMD}, 18 pages = {278}, 19 journal = {Climate Dynamics}, 20 audience = {internationale}, 21 doi = {10.1007/S00382-012-1541-7}, 22 year = {2012}, 23 month = oct, 24 ads={2012ClDy..tmp..278V}, 25 } 5 26 6 27 @article{RenaultDewitteEtAl:JGR:2012, … … 5723 5744 } 5724 5745 5725 @ UNPUBLISHED{RoxyPreethiEtAl:CD:2012submitted,5726 author = {{M} . {R}oxy and {B}. {P}reethi and {R}. {K}rishnan and {Y}. {T}animoto and{P}ascal {T}erray},5746 @article{RoxyPreethiEtAl:CD:2012, 5747 author = {{M}athew {R}oxy and {Y}ouichi {T}animoto and {B}. {P}reethi and {P}ascal {T}erray and {R}. {K}rishnan}, 5727 5748 title = {{I}ntraseasonal {SST} precipitation relationship and its spatial variability over the tropical summer monsoon region}, 5728 5749 year = {2012}, 5729 5750 aeresteam = {varclim}, 5730 5751 aerestype = {ACL}, 5731 format = {submitted},5732 5752 journal = {{C}limate {D}ynamics}, 5733 5753 loceanaffectation = {ird}, … … 5735 5755 loceanteam = {varclim}, 5736 5756 timestamp = {20120419}, 5757 ads={2012ClDy..tmp..302R}, 5758 doi={10.1007/s00382-012-1547-1}, 5759 hal_id={hal-00768510}, 5737 5760 } 5738 5761 … … 6266 6289 } 6267 6290 6268 @UNPUBLISHED{AyataLevyEtAl:JMS:201 1submitted,6291 @UNPUBLISHED{AyataLevyEtAl:JMS:2012accepted, 6269 6292 author = {{S}akina-{D}orothée {A}yata and {M}arina {L}évy and {O}livier {A}umont and {A}. {S}ciandra and {J}. {S}ainte-{M}arie and {A}. {T}agliabue and {O}. {B}ernard}, 6270 6293 title = {{P}hytoplankton growth formulation in marine ecosystem models: should we take into account photo-adaptation and variable stochiometry in oligotrophic areas?}, 6271 note = { submitted},6272 year = {201 1},6294 note = {accepted}, 6295 year = {2012}, 6273 6296 aerestype = {ACL}, 6274 6297 format = {submitted}, … … 6278 6301 loceanteam = {phybiocar}, 6279 6302 timestamp = {20120419}, 6303 hal_id={hal-00767456}, 6280 6304 } 6281 6305
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