NPZ response to eddy-induced upwelling in a Brazil Current ring: A theoretical approach

Dynamics of Atmospheres and Oceans - Tập 87 - Trang 101096 - 2019
Filipe Pereira1, Ilson Carlos Almeida da Silveira1, Glenn R. Flierl2, Amit Tandon3,4
1Departamento de Oceanografia Física, Química e Geológica, Instituto Oceanográfico, Universidade de São Paulo, São Paulo, SP 05508, Brazil
2Department of Earth, Atmospheric and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, MA 02139, United States
3Mechanical Engineering Department, University of Massachusetts Dartmouth, Dartmouth, MA 02747, United States
4School for Marine Science & Technology, University of Massachusetts Dartmouth, New Bedford MA, 02744, United States

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Bakun, 2006, Fronts and eddies as key structures in the habitat of marine fish larvae: opportunity, adaptive response and competitive advantage, Sci. Mar., 70, 105, 10.3989/scimar.2006.70s2105

Biló, 2014, Methods for estimating the velocities of the Brazil Current in the pre-salt reservoir area off Southeast Brazil (23° S–26° S), Ocean Dyn., 64, 1431, 10.1007/s10236-014-0761-2

Calado, 2006, A parametric model for the Brazil Current meanders and eddies off Southeastern Brazil, Geophys. Res. Lett., 33, 10.1029/2006GL026092

Calado, 2008, Feature-oriented regional modeling and simulations (FORMS) for the western South Atlantic: Southeastern Brazil region, Ocean Model., 25, 48, 10.1016/j.ocemod.2008.06.007

Calado, 2010, Eddy-induced upwelling off Cape São Tomé (22° S, Brazil), Continen. Shelf Res., 30, 1181, 10.1016/j.csr.2010.03.007

Campos, 2000, Shelf break upwelling driven by Brazil Current cyclonic meanders, Geophys. Res. Lett., 27, 751, 10.1029/1999GL010502

Chen, 1994, The roles of vertical mixing, solar radiation, and wind stress in a model simulation of the sea surface temperature seasonal cycle in the tropical Pacific Ocean, J. Geophys. Res.: Oceans, 99, 20345, 10.1029/94JC01621

de Boyer Montégut, 2004, Mixed layer depth over the global ocean: An examination of profile data and a profile-based climatology, J. Geophys. Res.: Oceans, 109, 10.1029/2004JC002378

Edwards, 1996, Oscillatory behaviour in a three-component plankton population model, Dyn. Stab. Syst., 11, 347, 10.1080/02681119608806231

Fanton d’Andon, 2009, GlobColour – the European Service for Ocean Colour

Flierl, 1999, Thin jet and contour dynamics models of Gulf Stream meandering, Dyn. Atmos. Oceans, 29, 189, 10.1016/S0377-0265(99)00006-8

Flierl, 1993, Biological effects of Gulf Stream meandering, J. Mar. Res., 51, 529, 10.1357/0022240933224016

Flierl, 2002, Mesoscale and submesoscale physical-biological interactions, 113

Franks, 2002, NPZ models of plankton dynamics: their construction, coupling to physics, and application, J. Oceanogr., 58, 379, 10.1023/A:1015874028196

Gaeta, 1999, The Vitória Eddy and its relation to the phytoplankton biomass and primary productivity during the austral Fall of 1995, Arch. Fish. Mar. Res., 47, 253

Garcia, 2014, World Ocean Atlas 2013, Volume 4: Dissolved Inorganic Nutrients (Phosphate, Nitrate, Silicate)

Huisman, 2006, Reduced mixing generates oscillations and chaos in the oceanic deep chlorophyll maximum, Nature, 439, 322, 10.1038/nature04245

Huntley, 1984, Food-limited growth of marine zooplankton, Am. Natur., 124, 455, 10.1086/284288

Landry, 1984, Effect of food acclimation on assimilation efficiency of Calanus pacificus, Limnol. Oceanogr., 29, 361, 10.4319/lo.1984.29.2.0361

Martin, 2001, Mechanisms for vertical nutrient transport within a North Atlantic mesoscale eddy, Deep Sea Res. Part II: Top. Stud. Oceanogr., 48, 757, 10.1016/S0967-0645(00)00096-5

McGillicuddy, 2016, Mechanisms of physical–biological–biogeochemical interaction at the oceanic mesoscale, Annu. Rev. Mar. Sci., 8, 125, 10.1146/annurev-marine-010814-015606

McGillicuddy, 1995, Coupled physical and biological modeling of the spring bloom in the North Atlantic (I): model formulation and one dimensional bloom processes, Deep Sea Res. Part I: Oceanogr. Res. Pap., 42, 1313, 10.1016/0967-0637(95)00034-4

Mill, 2015, Northward migration of Cape São Tomé rings, Brazil, Continen. Shelf Res., 106, 27, 10.1016/j.csr.2015.06.010

Monterey, 1997, 87

Moore, 2013, Processes and patterns of oceanic nutrient limitation, Nat. Geosci., 6, 701, 10.1038/ngeo1765

Namiki, 2017, Hydrodynamically-driven distribution of lanternfish larvae in the Southeast Brazilian Bight, J. Mar. Syst., 170, 115, 10.1016/j.jmarsys.2017.02.006

Niiler, 1977, One-dimensional models of the seasonal thermocline, 97

Olson, 1994, Life on the edge: marine life and fronts, Oceanography, 7, 52, 10.5670/oceanog.1994.03

Polvani, 1988, Applications of contour dynamics to two layer quasigeostrophic flows, Fluid Dyn. Res., 3, 422, 10.1016/0169-5983(88)90103-7

Pratt, 1986, Dynamics of potential vorticity fronts and eddy detachment, J. Phys. Oceanogr., 16, 1101, 10.1175/1520-0485(1986)016<1101:DOPVFA>2.0.CO;2

Pullin, 1992, Contour dynamics methods, Annu. Rev. Fluid Mech., 24, 89, 10.1146/annurev.fl.24.010192.000513

Rocha, 2014, Vertical structure, energetics, and dynamics of the Brazil Current System at 22° S–28° S, J. Geophys. Res.: Oceans, 119, 52, 10.1002/2013JC009143

Rodriguez, 2001, Mesoscale vertical motion and the size structure of phytoplankton in the ocean, Nature, 410, 360, 10.1038/35066560

Roy, 2012, Sequential variations of phytoplankton growth and mortality in an NPZ model: a remote-sensing-based assessment, J. Mar. Syst., 92, 16, 10.1016/j.jmarsys.2011.10.001

Schmid, 2018, Transport variability of the Brazil Current from observations and a data assimilation model, Ocean Sci., 14, 417, 10.5194/os-14-417-2018

Schmid, 1995, The Vitória eddy and its relation to the Brazil Current, J. Phys. Oceanogr., 25, 2532, 10.1175/1520-0485(1995)025<2532:TVEAIR>2.0.CO;2

Schmidtko, 2013, MIMOC: a global monthly isopycnal upper-ocean climatology with mixed layers, J. Geophys. Res.: Oceans, 118, 1658, 10.1002/jgrc.20122

Signorini, 2015, Chlorophyll variability in the oligotrophic gyres: mechanisms, seasonality and trends, Front. Mar. Sci., 2, 1, 10.3389/fmars.2015.00001

Silveira, 2004, On the baroclinic structure of the Brazil Current-Intermediate Western Boundary Current system at 22° S–23° S, Geophys. Res. Lett., 31, 10.1029/2004GL020036

Silveira, 2002, Eddy formation in 2½-layer, quasigeostrophic jets, J. Phys. Oceanogr., 32, 729, 10.1175/1520-0485(2002)032<0729:EFILQJ>2.0.CO;2

Silveira, 1999, Dynamics of separating western boundary currents, J. Phys. Oceanogr., 29, 119, 10.1175/1520-0485(1999)029<0119:DOSWBC>2.0.CO;2

Silveira, 2008, Is the meander growth in the Brazil Current system off Southeast Brazil due to baroclinic instability?, Dyn. Atmos. Oceans, 45, 187, 10.1016/j.dynatmoce.2008.01.002

Silveira, 2000, The Brazil Current off the eastern Brazilian coast, Rev. Brasileira Oceanogr., 48, 171, 10.1590/S1413-77392000000200008

Stramma, 1999, On the water masses and mean circulation of the South Atlantic Ocean, J. Geophys. Res.: Oceans, 104, 20863, 10.1029/1999JC900139

Strass, 1992, Chlorophyll patchiness caused by mesoscale upwelling at fronts, Deep Sea Res. Part A. Oceanogr. Res. Pap., 39, 75, 10.1016/0198-0149(92)90021-K

Talley, 2011

Woodson, 2007, Foraging behavior can influence dispersal of marine organisms, Limnol. Oceanogr., 52, 2701, 10.4319/lo.2007.52.6.2701

Yoshinaga, 2010, Vertical distribution of benthic invertebrate larvae during an upwelling event along a transect off the tropical Brazilian continental margin, J. Mar. Syst., 79, 124, 10.1016/j.jmarsys.2009.07.007