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Contrasts of bimodal tropical instability waves(TIWs)-induced wind stress perturbations in the Pacific Ocean among observations,ocean models,and coupled climate models

作     者:Kai MA Chuanyu LIU Junli XU Fan WANG Kai MA;Chuanyu LIU;Junli XU;Fan WANG

作者机构:School of Mathematics and PhysicsResearch Institute for Mathematics and Interdisciplinary SciencesQingdao University of Science and TechnologyQingdao 266100China Key Laboratory of Ocean Circulation and WavesInstitute of OceanologyChinese Academy of SciencesQingdao 266071China Pilot National Laboratory for Marine Science and Technology(Qingdao)Qingdao 266237China 

出 版 物:《Journal of Oceanology and Limnology》 (海洋湖沼学报(英文))

年 卷 期:2024年第42卷第1期

页      面:1-23页

核心收录:

学科分类:0710[理学-生物学] 07[理学] 0707[理学-海洋科学] 070601[理学-气象学] 0706[理学-大气科学] 

基  金:Supported by the National Natural Science Foundation of China(No.41976012) the Key Research Program of Laoshan Laboratory(LSL)(No.LSKJ 202202502) the Strategic Priority Research Program of Chinese Academy of Sciences(CAS)(No.XDB 42000000) 

主  题:bimodal tropical instability waves mesoscale air-sea interaction coupled models Yanai wave 

摘      要:The coupling between wind stress perturbations and sea surface temperature(SST)perturbations induced by tropical instability waves(TIWs)in the Pacific Ocean has been revealed previously and proven crucial to both the atmosphere and ***,an overlooked fact by previous studies is that the loosely defined“TIWsactually consist of two modes,including the Yanai wave-based TIW on the equator(hereafter eTIW)and the Rossby wave-based TIW off the equator(hereafter vTIW).Hence,the individual feedbacks of the wind stress to the bimodal TIWs remain *** this study,individual coupling relationships are established for both eTIW and v TIW,including the relationship between the TIW-induced SST perturbations and two components of wind stress perturbations,and the relationship between the TIW-induced wind stress perturbation divergence(curl)and the downwind(crosswind)TIW-induced SST *** show that,due to different distributions of eTIW and vTIW,the coupling strength induced by the eTIW is stronger on the equator,and that by the vTIW is stronger off the *** results of any of eTIW and vTIW are higher than those of the loosely defined *** further investigated how well the coupling relationships remained in several widely recognized oceanic general circulation models and fully coupled climate ***,the coupling relationships cannot be well represented in most numerical ***,we confirmed that higher resolution usually corresponds to more accurate ***,the coupling models established in this study are complementary to previous research and can be used to refine the oceanic and coupled climate models.

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