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Controls of the latitudinal migration of the Brazil-Malvinas confluence described in MOM6-SWA14

  • Nicole Cristine Laureanti
  • , Enrique Curchitser
  • , Katherine Hedstrom
  • , Alistair Adcroft
  • , Robert Hallberg
  • , Matthew J. Harrison
  • , Raphael Dussin
  • , Sin Chan Chou
  • , Paulo Nobre
  • , Emanuel Giarolla
  • , Rosio Camayo
  • Rutgers - The State University of New Jersey, New Brunswick
  • Potsdam Institute for Climate Impact Research
  • Instituto Nacional de Pesquisas Espaciais
  • University of Alaska Fairbanks
  • Princeton University
  • National Oceanic and Atmospheric Administration
  • University Corporation of Atmospheric Research

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

The distribution and productivity of nutrients, eddy formation, energy dissipation, and other ocean properties are influenced by the variability of Western Boundary Currents (WBCs). In the Southwestern Atlantic, the key features are the Brazil-Malvinas Confluence (BMC) and the North of Brazil Current (NBC). This work investigates them using a 20 year high-resolution ocean model simulation with the Modular Ocean Model version 6 (MOM6) 1/14° configuration. The results reveal a significant deviation in the path and trends of volume transport of the WBCs over the decades. The BMC adjacent region gets saltier and warmer, with increased kinetic energy and transport. Although transport trends in the NBC indicate reduced transport, this results from weaker wind forcing, which reduces the Mixed Layer Depth (MLD) in the simulation and the subsurface transport in the region. The warming in the Brazil Current region triggers a stronger southward flow, resulting in a southward shift of 0.93 ± 0.08° of latitude/decade in the BMC separation. Working against this flow, the propagation of the Kelvin Waves from the Eastern Pacific Ocean induces a northern shift of the BMC, revealed by topographic Kelvin Waves in the spectral analysis. This Pacific-Atlantic inter-basin relation indicated here underscores the importance of propagating Pacific disturbances into the region to maintain the positioning of the BMC and its properties under a warming Atlantic Ocean.

Original languageEnglish
Pages (from-to)3109-3128
Number of pages20
JournalGeoscientific Model Development
Volume19
Issue number8
DOIs
StatePublished - Apr 22 2026
Externally publishedYes

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