Characteristics and robustness of Agulhas leakage estimates: an inter-comparison study of Lagrangian methods
-
Published:2021-08-16
Issue:4
Volume:17
Page:1067-1080
-
ISSN:1812-0792
-
Container-title:Ocean Science
-
language:en
-
Short-container-title:Ocean Sci.
Author:
Schmidt ChristinaORCID, Schwarzkopf Franziska U.ORCID, Rühs SirenORCID, Biastoch ArneORCID
Abstract
Abstract. The inflow of relatively warm and salty water from the Indian Ocean into the South Atlantic via Agulhas leakage is important for the global overturning circulation and the global climate. In this study, we analyse the robustness of Agulhas leakage estimates as well as the thermohaline property modifications of Agulhas leakage south of Africa. Lagrangian experiments with both the newly developed tool Parcels and the well established tool Ariane were performed to simulate Agulhas leakage in the eddy-rich ocean–sea-ice model INALT20 (1/20∘ horizontal resolution) forced by the JRA55-do atmospheric boundary conditions.
The average transport, its variability, trend and the transit time from the Agulhas Current to the Cape Basin of Agulhas leakage is simulated comparably with both Lagrangian tools, emphasizing the robustness of our method. Different designs of the Lagrangian experiment alter in particular the total transport of Agulhas leakage by up to 2 Sv, but the variability and trend of the transport are similar across these estimates. During the transit from the Agulhas Current at 32∘ S to the Cape Basin, a cooling and freshening of Agulhas leakage waters occurs especially at the location of the Agulhas Retroflection, resulting in a density increase as the thermal effect dominates. Beyond the strong air–sea exchange around South Africa, Agulhas leakage warms and salinifies the water masses below the thermocline in the South Atlantic.
Funder
Helmholtz Association
Publisher
Copernicus GmbH
Subject
Cell Biology,Developmental Biology,Embryology,Anatomy
Reference60 articles.
1. Ansorge, I. J., Speich, S., Lutjeharms, J. R., Göni, G. J., Rautenbach,
C. J., Froneman, P. W., Rouault, M., and Garzoli, S.: Monitoring the oceanic
flow between Africa and Antarctica: Report of the first GoodHope cruise,
S. Afr. J. Sci., 101, 29–35, 2005. a 2. Arhan, M., Mercier, H., and Lutjeharms, J. R.: The disparate evolution of
three Agulhas rings in the South Atlantic Ocean, J. Geophys.
Res.-Oceans, 104, 20987–21005, https://doi.org/10.1029/1998jc900047, 1999. a 3. Arhan, M., Speich, S., Messager, C., Dencausse, G., Fine, R., and Boye, M.:
Anticyclonic and cyclonic eddies of subtropical origin in the subantarctic
zone south of Africa, J. Geophys. Res.-Oceans, 116, 1–22,
https://doi.org/10.1029/2011JC007140, 2011. a 4. Backeberg, B. C., Penven, P., and Rouault, M.: Impact of intensified Indian
Ocean winds on mesoscale variability in the Agulhas system, Nat. Clim.
Change, 2, 608–612, https://doi.org/10.1038/nclimate1587, 2012. a 5. Beal, L. M., De Ruijter, W. P., Biastoch, A., Zahn, R., Cronin, M., Hermes,
J., Lutjeharms, J., Quartly, G., Tozuka, T., Baker-Yeboah, S., Bornman, T.,
Cipollini, P., Dijkstra, H., Hall, I., Park, W., Peeters, F., Penven, P.,
Ridderinkhof, H., and Zinke, J.: On the role of the Agulhas system in ocean
circulation and climate, Nature, 472, 429–436, https://doi.org/10.1038/nature09983,
2011. a, b
Cited by
13 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|