A vertical-mode extrapolation scheme applied to the Brazil Current domain: quasi-synoptic scenarios

Authors

  • João P. M. Amorim
  • João P. M. Amorim
  • Ilson C. A. da Silveira
  • Milton Borges-Silva
  • Pedro W. M. Souza-Neto
  • Wellington C. Belo
  • Cauê Z. Lazaneo
  • Piero S. Bernardo
  • Marcelo Dottori
  • Renato P. Martins
  • Daniel L. Moreira

DOI:

https://doi.org/10.1590/

Keywords:

Brazil Current System, Quasi-Synoptic sections, Modal Extrapolation, Dynamical Extrapolation, Operational Oceanography

Abstract

The Brazil Current (BC) is a western boundary current, with an average vertical extension of 500 m, which occupies the southwestern margin of Atlantic Ocean. Recently, the South Brazil Bight - SBB (23º S - 28º S) has been intensively explored by the oil and gas industries, which brought a high demand in operational oceanography and ocean state monitoring. In this study we present a new technique based on the vertical dynamic modes of oscillation, to extrapolate velocity profiles in the SBB, with potential applications to data acquired by Vessel Mounted Acoustic Doppler Current Profilers (VMADCP). Using four quasi-synoptic crosssectional velocity data, acquired by Lowered Acoustic Doppler Current Profilers (LADCP), we observed that the mean circulation of this region can be characterized as a 2-dynamical mode system. This mean circulation is mainly dominated at surface by the BC and at intermediate levels by the Intermediate Western Boundary Current (IWBC), which flows northward. Furthermore, observed mesoscale vortical features in the SBB, such as eddies and meanders, are shown to be primarily barotropic-mode dominated. In our extrapolation methodology, the use of an independent set of velocity time series obtained by four moorings has shown to be a valid way for obtaining the relative contribution of each dynamical mode in the velocity field in the SBB. Normalized mean squared errors below 10% and radar diagrams show that the presented methodology was able to reproduce the main dynamic features observed by LADCP transects. Also, with this technique, we extrapolated three VMADCP sections and the results agreed with previous observations.

References

BELO, W. & SILVEIRA, I. 2013. A variabilidade vertical do oceano na Bacia de Santos, Boletim de Geociências da Petrobras 21: 39-62.

BILÓ, T. C., DA SILVEIRA, I. C. A., BELO, W. C., DE CASTRO, B. M. & PIOLA, A. R. 2014. Methods for estimating the velocities of the Brazil Current in the pre-salt reservoir area off southeast Brazil (23°S-26°S), Ocean Dynamics 64(10): 1431-1446.

BOEBEL, O., DAVIS, R., OLLITRAULT, M., PETERSON, R., RICHARDSON, P., SCHMID, C. & ZENK, W. 1999. The intermediate depth circulation of the western South Atlantic, Geophysical Research Letters 26(21): 3329-3332.

BOYER, T., GARCIA, H., LOCARNINI, R., ZWENG, M., MISHONOV, A., REAGAN, J., WEATHERS, K., BARANOVA, O., SEIDOV, D. & SMOLYAR, I. 2018. World Ocean Atlas 2018.

CALADO, L., GANGOPADHYAY, A. & DA SILVEIRA, I. 2006. A parametric model for the Brazil Current meanders and eddies off southeastern Brazil, Geophysical Research Letters 33(12).

CAMPOS, E. J. D., VELHOTE, D. & SILVEIRA, I. C. A. D. 2000. Shelf break upwelling driven by Brazil Current cyclonic meanders, Geophysical Research Letters 27(6): 751-754.

COSTA, V. S., MILL, G. N., GABIOUX, M., GROSSMANN-MATHESON, G. S. & PAIVA, A. M. 2017. The recirculation of the intermediate western boundary current at the Tubarão Bight-Brazil, Deep Sea Research Part I: Oceanographic Research Papers 120: 48-60.

DUARTE, C. S. & VIANA, A. R. 2007. Santos Drift System: stratigraphic organization and implications for late Cenozoic palaeocirculation in the Santos Basin, SW Atlantic Ocean, Geological Society, London, Special Publications 276(1): 171-198.

FERNANDES, A. M., DA SILVEIRA, I. C., CALADO, L., CAMPOS, E. J. & PAIVA, A. M. 2009. A two-layer approximation to the Brazil Current- Intermediate Western Boundary Current System between 20° S and 28° S, Ocean Modelling 29(2): 154-158.

FISCHER, J. & VISBECK, M. 1993. Deep velocity profiling with self-contained ADCPs, Journal of Atmospheric and Oceanic Technology 10(5): 764-773.

GORDON, A. L. 1989. Brazil-Malvinas confluence- 1984, Deep Sea Research Part A. Oceanographic Research Papers 36(3): 359-384.

GUERRA, L. A. A., PAIVA, A. M. & CHASSIGNET, E. P. 2018. On the translation of Agulhas rings to the western South Atlantic Ocean, Deep Sea Research Part I: Oceanographic Research Papers 139: 104-113.

LAXENAIRE, R., SPEICH, S., BLANKE, B., CHAIGNEAU, A., PEGLIASCO, C. & STEGNER, A. 2018. Anticyclonic eddies connecting the western boundaries of Indian and Atlantic Oceans, Journal of Geophysical Research: Oceans 123(11): 7651-7677.

LEBLOND, P. H. & MYSAK, L. A. 1981. Waves in the Ocean, Elsevier.

LEGEAIS, J.-F., OLLITRAULT, M. & ARHAN, M. 2013. Lagrangian observations in the Intermediate Western Boundary Current of the South Atlantic, Deep-Sea Research 85: 109-126.

LEVITUS, S. 1982. Climatological Atlas of the World Ocean, Vol. 13, US Department of Commerce, National Oceanic and Atmospheric Administration.

LODER, J. W., BOICOURT, W. C. & SIMPSON, J. H. 1998. Western Ocean boundary shelves, The Sea 11: 3-28.

LUKO, C. D., DA SILVEIRA, I., SIMOES-SOUSA, I. T., ARAUJO, J. M. & TANDON, A. 2021. Revisiting the Atlantic South Equatorial Current, Journal of Geophysical Research: Oceans 126(7): e2021JC017387.

MCDOUGALL, T. J. & BARKER, P. M. 2011. Getting started with TEOS-10 and the Gibbs Seawater (GSW) oceanographic toolbox, Scor/Iapso WG 127: 1-28.

MEISLING, K. E., COBBOLD, P. R. & MOUNT, V. S. 2001. Segmentation of an obliquely rifted margin, Campos and Santos basins, southeastern Brazil, AAPG bulletin 85(11): 1903-1924.

MUELLER, D. S. 2013. extrap: Software to assist the selection of extrapolation methods for moving-boat ADCP streamflow measurements, Computers & Geosciences 54: 211-218.

MÜLLER, T. J., IKEDA, Y., ZANGENBERG, N. & NONATO, L. V. 1998. Direct measurements of western boundary currents off Brazil between 20º S and 28º S, Journal of Geophysical Research: Oceans 103(C3): 5429-5437.

PUJOL, M. & MERTZ, F. 2019. Product user manual for sea level SLA products, Copernicus Marine Monitoring Service .

ROCHA, C. B., SILVEIRA, I. C. A. D., CASTRO, B. M. & LIMA, J. A. M. 2014. Vertical structure, energetics, and dynamics of the Brazil Current System at 22°S-28°S, Journal of Geophysical Research: Oceans 119(1): 52-69.

SILVEIRA, I. C. A. D., CALADO, L., CASTRO, B., CIRANO, M., LIMA, J. & MASCARENHAS, A. D. S. 2004. On the baroclinic structure of the Brazil Current-Intermediate Western Boundary Current system at 22º -23º S, Geophysical Research Letters 31(14): 1-5.

SILVEIRA, I. C. A. D., LIMA, J. A. M., SCHMIDT, A. C. K., CECCOPIERI, W., SARTORI, A., FRANSCISCO, C. P. F. & FONTES, R. F. C. 2008. Is the meander growth in the Brazil Current system off Southeast Brazil due to baroclinic instability?, Dynamics of Atmospheres and Oceans 45(3): 187-207.

SILVEIRA, I. C. A. D., SCHMIDT, A. C. K., CAMPOS, E. J. D., GODOI, S. S. & IKEDA, Y. 2000. A Corrente do Brasil ao largo da costa leste brasileira, Revista Brasileira de Oceanografia 48(2): 171-183. In Portuguese.

SOUTELINO, R., DA SILVEIRA, I., GANGOPADHYAY, A. & MIRANDA, J. 2011. Is the Brazil Current eddy-dominated to the north of 20º S?, Geophysical Research Letters 38(3): 1-5.

STRAMMA, L. & ENGLAND, M. 1999. On the water masses and mean circulation of the South Atlantic Ocean, Journal of Geophysical Research: Oceans 104(C9): 20863-20883.

SZUTS, Z., BLUNDELL, J., CHIDICHIMO, M. & MAROTZKE, J. 2012. A vertical-mode decomposition to investigate low-frequency internal motion across the Atlantic at 26º N, Ocean Science 8(3): 345-367.

URBANO NETO, D. F. & SILVEIRA, I. C. A. D. 2003. Estrutura dinâmica das contracorrentes equatoriais do Oceano Atlântico ao longo de 44º W, Revista Brasileira de Geofísica 21: 145-161.

VALLA, D., PIOLA, A. R., MEINEN, C. S. & CAMPOS, E. 2018. Strong mixing and recirculation in the northwestern Argentine Basin, Journal of Geophysical Research: Oceans 123(7): 4624-4648.

VISBECK, M. 2002. Deep velocity profiling using lowered acoustic Doppler current profilers: Bottom track and inverse solutions, Journal of Atmospheric and Oceanic Technology 19(5): 794-807.

WUNSCH, C. 1997. The vertical partition of oceanic horizontal kinetic energy, Journal of Physical Oceanography 27(8): 1770-1794.

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Published

2023-03-29

How to Cite

A vertical-mode extrapolation scheme applied to the Brazil Current domain: quasi-synoptic scenarios. (2023). Ocean and Coastal Research, 70(Suppl. 1). https://doi.org/10.1590/