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DOI10.1016/j.jmarsys.2019.05.004
Eastern Boundary Upwelling Systems response to different atmospheric forcing in a global eddy-permitting ocean model
Bonino, Giulia1,2; Masina, Simona2; Iovino, Doroteaciro2; Storto, Andrea2,3; Tsujino, Hiroyuki4
发表日期2019
ISSN0924-7963
EISSN1879-1573
卷号197
英文摘要

Three-dimensional ocean dynamics (e.g. coastal upwelling, Ekman Pumping, meridional currents) in the Eastern Boundary Upwelling Systems (EBUS) is largely dictated by the strength of equatorward wind and its cross-shore gradients. Ocean dynamics, in turn, affects the coastal sea surface temperature (SST). Mis-representing the wind fields may therefore lead to inaccurate current structures and, thus, to significant SST biases. Analysis of two atmospheric reanalysis products, ERAInterim (ERAINT) and JRA55-do version 1.1 (JRA55), shows differences in the structure of the wind stress and wind stress curl (WSC) over the EBUS regions, when compared to the satellite records from QuikSCAT. Our study shows that ERAINT product is affected by too strong and wide wind-drop off in the cross-shore direction, whereas the wind field is more accurate in the JRA55 product, characterized by weak and narrow wind drop-off and strong coastal winds. To better understand the impact of different fine structures of the near-coast wind on upwelling dynamics, we performed long-term ocean hindcast simulations over the period 1985-2015 with a global eddy-permitting configuration of the NEMO ocean general circulation model. We find that (1) weak ERAINT coastal wind stress and strong WSC promote offshore Ekman pumping, weak coastal vertical velocity and meridional currents and transport dominated by upwind flows; (2) stronger JRA55 coastal wind stress associated with weak WSC generates weaker Ekman Pumping, localized intense coastal upwelling and strong downwind currents and transport; (3) SST discrepancies between experiments are mostly related to the different near-shore wind stress rather than incoming heat fluxes.


WOS研究方向Geology ; Marine & Freshwater Biology ; Oceanography
来源期刊JOURNAL OF MARINE SYSTEMS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/102185
作者单位1.Univ Ca Foscari Venezia, Dorsoduro 3246, I-30123 Venice, Italy;
2.Ctr Euro Mediterraneo Cambiamenti Climat, Ocean Modeling & Data Assimilat Div, Viale Carlo Berti Pichat 6-2, I-40127 Bologna, Italy;
3.Sci & Technol Org, Ctr Maritime Res & Expt, Viale S Bartolomeo 400, I-19126 La Spezia, Italy;
4.JMA Meteorol Res Inst, 1-1 Nagamine, Tsukuba, Ibaraki 3050052, Japan
推荐引用方式
GB/T 7714
Bonino, Giulia,Masina, Simona,Iovino, Doroteaciro,et al. Eastern Boundary Upwelling Systems response to different atmospheric forcing in a global eddy-permitting ocean model[J],2019,197.
APA Bonino, Giulia,Masina, Simona,Iovino, Doroteaciro,Storto, Andrea,&Tsujino, Hiroyuki.(2019).Eastern Boundary Upwelling Systems response to different atmospheric forcing in a global eddy-permitting ocean model.JOURNAL OF MARINE SYSTEMS,197.
MLA Bonino, Giulia,et al."Eastern Boundary Upwelling Systems response to different atmospheric forcing in a global eddy-permitting ocean model".JOURNAL OF MARINE SYSTEMS 197(2019).
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