9129767 RWED9PHD 1 apa 50 date desc year Pereira, F. 18 https://fpereira.scrippsprofiles.ucsd.edu/wp-content/plugins/zotpress/
%7B%22status%22%3A%22success%22%2C%22updateneeded%22%3Afalse%2C%22instance%22%3Afalse%2C%22meta%22%3A%7B%22request_last%22%3A0%2C%22request_next%22%3A0%2C%22used_cache%22%3Atrue%7D%2C%22data%22%3A%5B%7B%22key%22%3A%225GJKKWUA%22%2C%22library%22%3A%7B%22id%22%3A9129767%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Lobo%20et%20al.%22%2C%22parsedDate%22%3A%222024%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%26lt%3Bdiv%20class%3D%26quot%3Bcsl-bib-body%26quot%3B%20style%3D%26quot%3Bline-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%26quot%3B%26gt%3B%5Cn%20%20%26lt%3Bdiv%20class%3D%26quot%3Bcsl-entry%26quot%3B%26gt%3BLobo%2C%20F.%20J.%2C%20Dos%20Passos%20Nascimento%2C%20J.%20L.%2C%20Dur%26%23xE1%3Bn%2C%20R.%2C%20L%26%23xF3%3Bpez-Quir%26%23xF3%3Bs%2C%20A.%2C%20Guill%26%23xE9%3Bn%2C%20J.%2C%20%26lt%3Bstrong%26gt%3BPereira%2C%20F.%26lt%3B%5C%2Fstrong%26gt%3B%2C%20Rocha%2C%20C.%20B.%2C%20%26amp%3B%20De%20Mahiques%2C%20M.%20M.%20%282024%29.%20Geomorphological%20features%20along%20the%20shelf%20of%20the%20southern%20Brazilian%20margin%3A%20Implications%20for%20shallow-water%20sediment%20transport%20induced%20by%20ocean%20currents.%20%26lt%3Bi%26gt%3BGeomorphology%26lt%3B%5C%2Fi%26gt%3B%2C%20%26lt%3Bi%26gt%3B456%26lt%3B%5C%2Fi%26gt%3B%2C%20109215.%20%26lt%3Ba%20class%3D%26%23039%3Bzp-DOIURL%26%23039%3B%20href%3D%26%23039%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.geomorph.2024.109215%26%23039%3B%26gt%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.geomorph.2024.109215%26lt%3B%5C%2Fa%26gt%3B%26lt%3B%5C%2Fdiv%26gt%3B%5Cn%26lt%3B%5C%2Fdiv%26gt%3B%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Geomorphological%20features%20along%20the%20shelf%20of%20the%20southern%20Brazilian%20margin%3A%20Implications%20for%20shallow-water%20sediment%20transport%20induced%20by%20ocean%20currents%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22F.J.%22%2C%22lastName%22%3A%22Lobo%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22J.L.%22%2C%22lastName%22%3A%22Dos%20Passos%20Nascimento%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22R.%22%2C%22lastName%22%3A%22Dur%5Cu00e1n%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22A.%22%2C%22lastName%22%3A%22L%5Cu00f3pez-Quir%5Cu00f3s%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22J.%22%2C%22lastName%22%3A%22Guill%5Cu00e9n%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22F.%22%2C%22lastName%22%3A%22Pereira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22C.B.%22%2C%22lastName%22%3A%22Rocha%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22M.M.%22%2C%22lastName%22%3A%22De%20Mahiques%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%2207%5C%2F2024%22%2C%22section%22%3A%22%22%2C%22partNumber%22%3A%22%22%2C%22partTitle%22%3A%22%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.geomorph.2024.109215%22%2C%22citationKey%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flinkinghub.elsevier.com%5C%2Fretrieve%5C%2Fpii%5C%2FS0169555X2400165X%22%2C%22PMID%22%3A%22%22%2C%22PMCID%22%3A%22%22%2C%22ISSN%22%3A%220169555X%22%2C%22language%22%3A%22en%22%2C%22collections%22%3A%5B%22RWED9PHD%22%5D%2C%22dateModified%22%3A%222025-05-19T22%3A28%3A02Z%22%7D%7D%2C%7B%22key%22%3A%22QW6XYV2M%22%2C%22library%22%3A%7B%22id%22%3A9129767%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Pereira%20et%20al.%22%2C%22parsedDate%22%3A%222024%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%26lt%3Bdiv%20class%3D%26quot%3Bcsl-bib-body%26quot%3B%20style%3D%26quot%3Bline-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%26quot%3B%26gt%3B%5Cn%20%20%26lt%3Bdiv%20class%3D%26quot%3Bcsl-entry%26quot%3B%26gt%3B%26lt%3Bstrong%26gt%3BPereira%2C%20F.%26lt%3B%5C%2Fstrong%26gt%3B%2C%20Da%20Silveira%2C%20I.%20C.%20A.%2C%20Tandon%2C%20A.%2C%20Franks%2C%20P.%20J.%20S.%2C%20Luko%2C%20C.%20D.%2C%20Santos%2C%20D.%20M.%20C.%2C%20Pompeu%2C%20M.%2C%20Michelazzo%2C%20L.%20S.%2C%20Chuqui%2C%20M.%20G.%2C%20%26amp%3B%20Brandini%2C%20F.%20P.%20%282024%29.%20Phytoplankton%20Responses%20to%20Mesoscale%20and%20Submesoscale%20Processes%20in%20a%20Tropical%20Meander.%20%26lt%3Bi%26gt%3BJournal%20of%20Geophysical%20Research%3A%20Oceans%26lt%3B%5C%2Fi%26gt%3B%2C%20%26lt%3Bi%26gt%3B129%26lt%3B%5C%2Fi%26gt%3B%286%29%2C%20e2023JC020685.%20%26lt%3Ba%20class%3D%26%23039%3Bzp-DOIURL%26%23039%3B%20href%3D%26%23039%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1029%5C%2F2023JC020685%26%23039%3B%26gt%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1029%5C%2F2023JC020685%26lt%3B%5C%2Fa%26gt%3B%26lt%3B%5C%2Fdiv%26gt%3B%5Cn%26lt%3B%5C%2Fdiv%26gt%3B%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Phytoplankton%20Responses%20to%20Mesoscale%20and%20Submesoscale%20Processes%20in%20a%20Tropical%20Meander%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Filipe%22%2C%22lastName%22%3A%22Pereira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ilson%20C.%20A.%22%2C%22lastName%22%3A%22Da%20Silveira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Amit%22%2C%22lastName%22%3A%22Tandon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Peter%20J.%20S.%22%2C%22lastName%22%3A%22Franks%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Caique%20D.%22%2C%22lastName%22%3A%22Luko%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Daniel%20M.%20C.%22%2C%22lastName%22%3A%22Santos%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Mayza%22%2C%22lastName%22%3A%22Pompeu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Luan%20S.%22%2C%22lastName%22%3A%22Michelazzo%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Mateus%20G.%22%2C%22lastName%22%3A%22Chuqui%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederico%20P.%22%2C%22lastName%22%3A%22Brandini%22%7D%5D%2C%22abstractNote%22%3A%22Abstract%5Cn%20%20%20%20%20%20%20%20%20%20%20%20The%20mesoscale%20activity%20of%20western%20boundary%20currents%20can%20induce%20changes%20in%20the%20oligotrophic%20conditions%20of%20the%20oceanic%20subtropical%20gyres.%20Off%20SE%20Brazil%2C%20recurrent%20meanders%20in%20the%20Brazil%20Current%20can%20modulate%20the%20pelagic%20ecosystem%20through%20eddy%5Cu2010induced%20upwelling%2C%20as%20well%20as%20drive%20coastal%20upwelling%20and%20cross%5Cu2010shelf%20exchanges.%20Despite%20their%20relevance%2C%20direct%20measurements%20of%20such%20meanders%20are%20scarce.%20At%20the%20end%20of%20the%20Spring%20of%202019%2C%20we%20acquired%20measurements%20of%20both%20physical%20and%20biogeochemical%20properties%20along%20a%20transect%20through%20one%20of%20these%20features%2C%20with%205%5Cu201310%5Cu00a0km%20spacing%20between%20stations.%20Displacements%20of%20the%20isopycnals%20at%20the%20meander%20edges%20arose%20from%20submesoscale%20filaments%20along%20the%20meander%26%23039%3Bs%20rim%2C%20associated%20with%20the%20signature%20of%20shelf%20water%20masses.%20Chlorophyll%20distributions%20along%20the%20transect%20indicated%20phytoplankton%20responses%20to%20the%20different%20dynamic%20regimes%20in%20the%20meander%3A%20eddy%20stirring%20in%20the%20surface%20mixed%20layers%20versus%20eddy%20pumping%20in%20the%20subsurface%20waters%2C%20and%20mesoscale%20dynamics%20in%20the%20meander%20center%20versus%20submesoscale%20dynamics%20in%20its%20periphery.%20Subsurface%20phytoplankton%20biomass%20was%20enhanced%20in%20the%20meander%20center%2C%20likely%20due%20to%20eddy%20pumping%20raising%20the%20nutricline%20into%20the%20euphotic%20zone.%20Eddy%20pumping%20also%20appears%20to%20have%20contributed%20to%20a%20shift%20in%20the%20phytoplankton%20community%20composition%20to%20larger%20organisms.%20Our%20results%20indicate%20that%20the%20physical%20dynamics%20create%20different%20habitats%20across%20the%20meander%2C%20leading%20to%20spatial%20patchiness%20in%20the%20chlorophyll%20distributions%2C%20with%20different%20types%20of%20organisms%20in%20distinct%20parts%20of%20the%20meander.%5Cn%20%20%20%20%20%20%20%20%20%20%2C%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20Plain%20Language%20Summary%5Cn%20%20%20%20%20%20%20%20%20%20%20%20Like%20rivers%2C%20ocean%20currents%20can%20meander%20along%20their%20paths.%20Off%20southeastern%20Brazil%2C%20the%20Brazil%20Current%20flows%20southward%20and%20meanders%20as%20it%20flows%20past%20capes%20in%20the%20region.%20These%20meanders%20are%20hundreds%20of%20kilometers%20wide%20%28mesoscale%29%20and%20can%20generate%20smaller%20features%20that%20are%20tens%20of%20kilometers%20wide%20%28submesoscale%29.%20These%20multiscale%20processes%20impact%20the%20planktonic%20ecosystem%20by%20inducing%20nutrient%20inputs%20to%20the%20nutrient%5Cu2010poor%20open%20ocean%20and%20consequently%20enhancing%20primary%20productivity.%20However%2C%20direct%20measurements%20of%20these%20features%20are%20scarce.%20We%20had%20the%20opportunity%20to%20survey%20one%20of%20these%20meanders%20in%202019%2C%20collecting%20physical%20and%20biogeochemical%20data%20along%20a%20single%20line%20through%20the%20meander%20from%20southwest%20to%20northeast.%20We%20found%20small%5Cu2010scale%20distortions%20that%20indicated%20the%20presence%20of%20submesoscale%20features%20swirling%20around%20the%20meander%26%23039%3Bs%20rim.%20Different%20parts%20of%20the%20meander%20showed%20distinct%20phytoplankton%20responses%2C%20with%20more%20phytoplankton%20in%20the%20center%2C%20below%20the%20surface%2C%20likely%20growing%20on%20nutrients%20pumped%20upward%20by%20the%20meander.%20This%20pumping%20process%20might%20have%20been%20correlated%20with%20a%20phytoplankton%20community%20shift%20from%20small%20to%20larger%20organisms.%20Overall%2C%20our%20study%20shows%20that%20mesoscale%20and%20submesoscale%20motions%20create%20a%20variety%20of%20habitats%2C%20leading%20to%20distinct%20chlorophyll%20distribution%20patterns%20in%20different%20parts%20of%20the%20meander.%5Cn%20%20%20%20%20%20%20%20%20%20%2C%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20Key%20Points%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20We%20present%20the%20first%20physical%5Cu2010biological%20measurements%20of%20a%20Brazil%20Current%20cyclonic%20meander%20drawing%20high%20chlorophyll%20shelf%20waters%20offshore%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20Eddy%20pumping%20raised%20nutricline%20to%20the%20euphotic%20zone%20driving%20subsurface%20phytoplankton%20enhancement%20at%20eddy%20center%20and%20invisible%20to%20satellites%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%20Distinct%20hydrodynamic%20regimes%20modulated%20the%20phytoplankton%20response%20in%20the%20center%2C%20rim%2C%20surface%2C%20and%20subsurface%20of%20the%20eddy%22%2C%22date%22%3A%2206%5C%2F2024%22%2C%22section%22%3A%22%22%2C%22partNumber%22%3A%22%22%2C%22partTitle%22%3A%22%22%2C%22DOI%22%3A%2210.1029%5C%2F2023JC020685%22%2C%22citationKey%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fagupubs.onlinelibrary.wiley.com%5C%2Fdoi%5C%2F10.1029%5C%2F2023JC020685%22%2C%22PMID%22%3A%22%22%2C%22PMCID%22%3A%22%22%2C%22ISSN%22%3A%222169-9275%2C%202169-9291%22%2C%22language%22%3A%22en%22%2C%22collections%22%3A%5B%22BZBPGKQB%22%2C%22RWED9PHD%22%5D%2C%22dateModified%22%3A%222024-07-15T21%3A06%3A41Z%22%7D%7D%2C%7B%22key%22%3A%22QMWZDG5H%22%2C%22library%22%3A%7B%22id%22%3A9129767%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Luko%20et%20al.%22%2C%22parsedDate%22%3A%222023%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%26lt%3Bdiv%20class%3D%26quot%3Bcsl-bib-body%26quot%3B%20style%3D%26quot%3Bline-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%26quot%3B%26gt%3B%5Cn%20%20%26lt%3Bdiv%20class%3D%26quot%3Bcsl-entry%26quot%3B%26gt%3BLuko%2C%20C.%20D.%2C%20Lazaneo%2C%20C.%20Z.%2C%20Silveira%2C%20I.%20C.%20A.%20D.%2C%20%26lt%3Bstrong%26gt%3BPereira%2C%20F.%26lt%3B%5C%2Fstrong%26gt%3B%2C%20%26amp%3B%20Tandon%2C%20A.%20%282023%29.%20Topographically%20Generated%20Submesoscale%20Shear%20Instabilities%20Associated%20with%20Brazil%20Current%20Meanders.%20%26lt%3Bi%26gt%3BJournal%20of%20Physical%20Oceanography%26lt%3B%5C%2Fi%26gt%3B%2C%20%26lt%3Bi%26gt%3B53%26lt%3B%5C%2Fi%26gt%3B%287%29%2C%201669%26%23x2013%3B1689.%20%26lt%3Ba%20class%3D%26%23039%3Bzp-DOIURL%26%23039%3B%20href%3D%26%23039%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1175%5C%2FJPO-D-22-0122.1%26%23039%3B%26gt%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1175%5C%2FJPO-D-22-0122.1%26lt%3B%5C%2Fa%26gt%3B%26lt%3B%5C%2Fdiv%26gt%3B%5Cn%26lt%3B%5C%2Fdiv%26gt%3B%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Topographically%20Generated%20Submesoscale%20Shear%20Instabilities%20Associated%20with%20Brazil%20Current%20Meanders%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Caique%20D.%22%2C%22lastName%22%3A%22Luko%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Cau%5Cu00ea%20Z.%22%2C%22lastName%22%3A%22Lazaneo%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ilson%20C.%20A.%20Da%22%2C%22lastName%22%3A%22Silveira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Filipe%22%2C%22lastName%22%3A%22Pereira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Amit%22%2C%22lastName%22%3A%22Tandon%22%7D%5D%2C%22abstractNote%22%3A%22Abstract%5Cn%20%20%20%20%20%20%20%20%20%20%20%20The%20western%20boundary%20current%20system%20off%20southeastern%20Brazil%20is%20composed%20of%20the%20poleward-flowing%20Brazil%20Current%20%28BC%29%20in%20the%20upper%20300%20m%20and%20the%20equatorward%20flowing%20Intermediate%20Western%20Boundary%20Current%20%28IWBC%29%20underneath%20it%2C%20forming%20a%20first-baroclinic%20mode%20structure%20in%20the%20mean.%20Between%2022%5Cu00b0%20and%2023%5Cu00b0S%2C%20the%20BC-IWBC%20jet%20develops%20recurrent%20cyclonic%20meanders%20that%20grow%20quasi-stationarily%20via%20baroclinic%20instability%2C%20though%20their%20triggering%20mechanisms%20are%20not%20yet%20well%20understood.%20Our%20study%2C%20thus%2C%20aims%20to%20propose%20a%20mechanism%20that%20could%20initiate%20the%20formation%20of%20these%20mesoscale%20eddies%20by%20adding%20the%20submesoscale%20component%20to%20the%20hydrodynamic%20scenario.%20To%20address%20this%2C%20we%20perform%20a%20regional%201%5C%2F50%5Cu00b0%20%28%5Cu223c2%20km%29%20resolution%20numerical%20simulation%20using%20CROCO%20%28Coastal%20and%20Regional%20Ocean%20Community%20model%29.%20Our%20results%20indicate%20that%20incoming%20anticyclones%20reach%20the%20slope%20upstream%20of%20separation%20regions%20and%20generate%20barotropic%20instability%20that%20can%20trigger%20the%20meanders%5Cu2019%20formation.%20Subsequently%2C%20this%20process%20generates%20submesoscale%20cyclones%20that%20contribute%2C%20along%20with%20baroclinic%20instability%2C%20to%20the%20meanders%5Cu2019%20growth%2C%20resulting%20in%20a%20submesoscale-to-mesoscale%20inverse%20cascade.%20Last%2C%20as%20the%20mesoscale%20cyclones%20grow%2C%20they%20interact%20with%20the%20slope%2C%20generating%20inertially%20and%20symmetrically%20unstable%20anticyclonic%20submesoscale%20vortices%20and%20filaments.%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20Significance%20Statement%5Cn%20%20%20%20%20%20%20%20%20%20%20%20%20%20Off%20southeastern%20Brazil%2C%20the%20Brazil%20Current%20develops%20recurrent%20cyclonic%20meanders.%20Such%20meanders%20enhance%20the%20open-ocean%20primary%20productivity%20and%20are%20of%20societal%20importance%20as%20they%20are%20located%20in%20a%20region%20rich%20in%20oil%20and%20gas%20where%20oil-spill%20accidents%20have%20already%20happened.%20This%20study%20aims%20to%20explore%20the%20processes%20responsible%20for%20triggering%20the%20formation%20of%20these%20mesoscale%20eddies.%20We%20find%20that%20incoming%20anticyclones%20reach%20the%20slope%20upstream%20of%20separation%20regions%20and%20generate%20barotropic%20instabilities%20that%20eject%20submesoscale%20filaments%20and%20vortices%20and%20can%20trigger%20the%20meanders%5Cu2019%20formation.%20Such%20results%20show%20that%20topographically%20generated%20submesoscale%20instabilities%20can%20play%20an%20important%20role%20in%20the%20dynamics%20of%20mesoscale%20meanders%20off%20southeastern%20Brazil.%20Moreover%2C%20this%20may%20indicate%20that%20resolving%20the%20submesoscale%20dynamics%20in%20operational%20numerical%20models%20may%20contribute%20to%20an%20increase%20in%20the%20predictability%20of%20the%20regional%20eddies.%22%2C%22date%22%3A%2207%5C%2F2023%22%2C%22section%22%3A%22%22%2C%22partNumber%22%3A%22%22%2C%22partTitle%22%3A%22%22%2C%22DOI%22%3A%2210.1175%5C%2FJPO-D-22-0122.1%22%2C%22citationKey%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fjournals.ametsoc.org%5C%2Fview%5C%2Fjournals%5C%2Fphoc%5C%2F53%5C%2F7%5C%2FJPO-D-22-0122.1.xml%22%2C%22PMID%22%3A%22%22%2C%22PMCID%22%3A%22%22%2C%22ISSN%22%3A%220022-3670%2C%201520-0485%22%2C%22language%22%3A%22%22%2C%22collections%22%3A%5B%22RWED9PHD%22%5D%2C%22dateModified%22%3A%222025-05-19T22%3A28%3A20Z%22%7D%7D%2C%7B%22key%22%3A%22UYAY994L%22%2C%22library%22%3A%7B%22id%22%3A9129767%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Silveira%20et%20al.%22%2C%22parsedDate%22%3A%222023%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%26lt%3Bdiv%20class%3D%26quot%3Bcsl-bib-body%26quot%3B%20style%3D%26quot%3Bline-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%26quot%3B%26gt%3B%5Cn%20%20%26lt%3Bdiv%20class%3D%26quot%3Bcsl-entry%26quot%3B%26gt%3BSilveira%2C%20I.%20C.%20A.%20D.%2C%20%26lt%3Bstrong%26gt%3BPereira%2C%20F.%26lt%3B%5C%2Fstrong%26gt%3B%2C%20Flierl%2C%20G.%20R.%2C%20Simoes-Sousa%2C%20I.%20T.%2C%20Pal%26%23xF3%3Bczy%2C%20A.%2C%20Borges-Silva%2C%20M.%2C%20%26amp%3B%20Rocha%2C%20C.%20B.%20%282023%29.%20The%20Brazil%20Current%20quasi-stationary%20unstable%20meanders%20at%2022%26%23xB0%3BS%26%23x2013%3B23%26%23xB0%3BS.%20%26lt%3Bi%26gt%3BProgress%20in%20Oceanography%26lt%3B%5C%2Fi%26gt%3B%2C%20%26lt%3Bi%26gt%3B210%26lt%3B%5C%2Fi%26gt%3B%2C%20102925.%20%26lt%3Ba%20class%3D%26%23039%3Bzp-DOIURL%26%23039%3B%20href%3D%26%23039%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.pocean.2022.102925%26%23039%3B%26gt%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.pocean.2022.102925%26lt%3B%5C%2Fa%26gt%3B%26lt%3B%5C%2Fdiv%26gt%3B%5Cn%26lt%3B%5C%2Fdiv%26gt%3B%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22The%20Brazil%20Current%20quasi-stationary%20unstable%20meanders%20at%2022%5Cu00b0S%5Cu201323%5Cu00b0S%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ilson%20C.A.%20Da%22%2C%22lastName%22%3A%22Silveira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Filipe%22%2C%22lastName%22%3A%22Pereira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Glenn%20R.%22%2C%22lastName%22%3A%22Flierl%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Iury%20T.%22%2C%22lastName%22%3A%22Simoes-Sousa%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Andr%5Cu00e9%22%2C%22lastName%22%3A%22Pal%5Cu00f3czy%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Milton%22%2C%22lastName%22%3A%22Borges-Silva%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22C%5Cu00e9sar%20B.%22%2C%22lastName%22%3A%22Rocha%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%2201%5C%2F2023%22%2C%22section%22%3A%22%22%2C%22partNumber%22%3A%22%22%2C%22partTitle%22%3A%22%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.pocean.2022.102925%22%2C%22citationKey%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flinkinghub.elsevier.com%5C%2Fretrieve%5C%2Fpii%5C%2FS0079661122001847%22%2C%22PMID%22%3A%22%22%2C%22PMCID%22%3A%22%22%2C%22ISSN%22%3A%2200796611%22%2C%22language%22%3A%22en%22%2C%22collections%22%3A%5B%22RWED9PHD%22%5D%2C%22dateModified%22%3A%222025-05-19T22%3A33%3A14Z%22%7D%7D%2C%7B%22key%22%3A%22BGGCNB7T%22%2C%22library%22%3A%7B%22id%22%3A9129767%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Simoes-Sousa%20et%20al.%22%2C%22parsedDate%22%3A%222022-10-27%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%26lt%3Bdiv%20class%3D%26quot%3Bcsl-bib-body%26quot%3B%20style%3D%26quot%3Bline-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%26quot%3B%26gt%3B%5Cn%20%20%26lt%3Bdiv%20class%3D%26quot%3Bcsl-entry%26quot%3B%26gt%3BSimoes-Sousa%2C%20I.%20T.%2C%20Tandon%2C%20A.%2C%20%26lt%3Bstrong%26gt%3BPereira%2C%20F.%26lt%3B%5C%2Fstrong%26gt%3B%2C%20Lazaneo%2C%20C.%20Z.%2C%20%26amp%3B%20Mahadevan%2C%20A.%20%282022%29.%20Mixed%20layer%20eddies%20supply%20nutrients%20to%20enhance%20the%20spring%20phytoplankton%20bloom.%20%26lt%3Bi%26gt%3BFrontiers%20in%20Marine%20Science%26lt%3B%5C%2Fi%26gt%3B%2C%20%26lt%3Bi%26gt%3B9%26lt%3B%5C%2Fi%26gt%3B%2C%20825027.%20%26lt%3Ba%20class%3D%26%23039%3Bzp-DOIURL%26%23039%3B%20href%3D%26%23039%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.3389%5C%2Ffmars.2022.825027%26%23039%3B%26gt%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.3389%5C%2Ffmars.2022.825027%26lt%3B%5C%2Fa%26gt%3B%26lt%3B%5C%2Fdiv%26gt%3B%5Cn%26lt%3B%5C%2Fdiv%26gt%3B%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Mixed%20layer%20eddies%20supply%20nutrients%20to%20enhance%20the%20spring%20phytoplankton%20bloom%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Iury%20T.%22%2C%22lastName%22%3A%22Simoes-Sousa%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Amit%22%2C%22lastName%22%3A%22Tandon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Filipe%22%2C%22lastName%22%3A%22Pereira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Caue%20Z.%22%2C%22lastName%22%3A%22Lazaneo%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Amala%22%2C%22lastName%22%3A%22Mahadevan%22%7D%5D%2C%22abstractNote%22%3A%22Mixed%20layer%20eddies%20resulting%20from%20baroclinic%20instability%20of%20fronts%20convert%20horizontal%20buoyancy%20gradients%20into%20vertical%20stratification%2C%20shoaling%20the%20mixed%20layer.%20In%20light-limited%20regimes%20%5Cu2013%20high-latitudes%20%5Cu2013%20this%20process%20can%20initiate%20phytoplankton%20blooms%20prior%20to%20the%20springtime%20warming.%20The%20question%20is%20whether%20mixed%20layer%20eddies%20can%20enhance%20the%20spring%20bloom%20by%20delivering%20nutrients%20from%20beneath%20the%20mixed%20layer.%20We%20couple%20a%20submesoscale-resolving%20model%20%28SUB%29%20with%20a%20simple%20ecosystem%20model%20and%20examine%20the%20role%20of%20mixed%20layer%20eddies%20on%20the%20development%20of%20the%20spring%20bloom.%20We%20compare%20the%20SUB%20simulation%20to%20two%20coarser%20resolution%20%2810%20km%29%20simulations%2C%20one%20that%20includes%20a%20mixed%20layer%20eddy%20parameterization%20%28MLE%29%20and%20another%20that%20prescribes%20the%20restratification%20from%20SUB%20and%20advects%20the%20biogeochemical%20tracers%20using%20geostrophic%20velocities%20%28NVF%29.%20The%20MLE%20simulates%20restratification%20of%20the%20mixed%20layer%20and%20bloom%20onset%2C%20but%20the%20spring%20bloom%20has%20a%20deficit%20of%2010%5Cu201313%25%20in%20the%20new%20production%20compared%20to%20SUB.%20The%20NVF%20has%20the%20same%20restratification%20as%20SUB%2C%20and%20with%20no%20vertical%20flux%20of%20nutrients%2C%20leads%20to%20a%20spring%20bloom%20with%20a%2032%5Cu201340%25%20new%20production%20deficit%20compared%20to%20SUB.%20Submesoscale%20processes%20lead%20to%20exchange%20across%20the%20mixed%20layer%20base%2C%20which%20is%20not%20represented%20in%20coarse%20resolution%20model%20simulations%2C%20even%20with%20mixed%20layer%20eddy%20parameterizations.%20Our%20results%20show%20that%20nutrients%20supplied%20by%20mixed%20layer%20eddies%20are%20important%20to%20enhance%20the%20spring%20bloom.%22%2C%22date%22%3A%222022-10-27%22%2C%22section%22%3A%22%22%2C%22partNumber%22%3A%22%22%2C%22partTitle%22%3A%22%22%2C%22DOI%22%3A%2210.3389%5C%2Ffmars.2022.825027%22%2C%22citationKey%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.frontiersin.org%5C%2Farticles%5C%2F10.3389%5C%2Ffmars.2022.825027%5C%2Ffull%22%2C%22PMID%22%3A%22%22%2C%22PMCID%22%3A%22%22%2C%22ISSN%22%3A%222296-7745%22%2C%22language%22%3A%22%22%2C%22collections%22%3A%5B%22RWED9PHD%22%5D%2C%22dateModified%22%3A%222025-05-19T22%3A28%3A36Z%22%7D%7D%2C%7B%22key%22%3A%225RA4NH4U%22%2C%22library%22%3A%7B%22id%22%3A9129767%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Luko%20et%20al.%22%2C%22parsedDate%22%3A%222022%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%26lt%3Bdiv%20class%3D%26quot%3Bcsl-bib-body%26quot%3B%20style%3D%26quot%3Bline-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%26quot%3B%26gt%3B%5Cn%20%20%26lt%3Bdiv%20class%3D%26quot%3Bcsl-entry%26quot%3B%26gt%3BLuko%2C%20C.%20D.%2C%20%26lt%3Bstrong%26gt%3BPereira%2C%20F.%26lt%3B%5C%2Fstrong%26gt%3B%2C%20Da%20Silveira%2C%20I.%20C.%20A.%2C%20Tandon%2C%20A.%2C%20%26amp%3B%20Flierl%2C%20G.%20R.%20%282022%29.%20Effects%20of%20the%20seasonality%20of%20mesoscale%20eddies%20on%20the%20planktonic%20dynamics%20off%20eastern%20Brazil.%20%26lt%3Bi%26gt%3BDynamics%20of%20Atmospheres%20and%20Oceans%26lt%3B%5C%2Fi%26gt%3B%2C%20%26lt%3Bi%26gt%3B98%26lt%3B%5C%2Fi%26gt%3B%2C%20101299.%20%26lt%3Ba%20class%3D%26%23039%3Bzp-DOIURL%26%23039%3B%20href%3D%26%23039%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.dynatmoce.2022.101299%26%23039%3B%26gt%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.dynatmoce.2022.101299%26lt%3B%5C%2Fa%26gt%3B%26lt%3B%5C%2Fdiv%26gt%3B%5Cn%26lt%3B%5C%2Fdiv%26gt%3B%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Effects%20of%20the%20seasonality%20of%20mesoscale%20eddies%20on%20the%20planktonic%20dynamics%20off%20eastern%20Brazil%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Caique%20D.%22%2C%22lastName%22%3A%22Luko%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Filipe%22%2C%22lastName%22%3A%22Pereira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ilson%20C.A.%22%2C%22lastName%22%3A%22Da%20Silveira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Amit%22%2C%22lastName%22%3A%22Tandon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Glenn%20R.%22%2C%22lastName%22%3A%22Flierl%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%2206%5C%2F2022%22%2C%22section%22%3A%22%22%2C%22partNumber%22%3A%22%22%2C%22partTitle%22%3A%22%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.dynatmoce.2022.101299%22%2C%22citationKey%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flinkinghub.elsevier.com%5C%2Fretrieve%5C%2Fpii%5C%2FS0377026522000185%22%2C%22PMID%22%3A%22%22%2C%22PMCID%22%3A%22%22%2C%22ISSN%22%3A%2203770265%22%2C%22language%22%3A%22en%22%2C%22collections%22%3A%5B%22RWED9PHD%22%5D%2C%22dateModified%22%3A%222025-05-19T22%3A28%3A29Z%22%7D%7D%2C%7B%22key%22%3A%226LS4IKMP%22%2C%22library%22%3A%7B%22id%22%3A9129767%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Pereira%20et%20al.%22%2C%22parsedDate%22%3A%222020-06-02%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%26lt%3Bdiv%20class%3D%26quot%3Bcsl-bib-body%26quot%3B%20style%3D%26quot%3Bline-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%26quot%3B%26gt%3B%5Cn%20%20%26lt%3Bdiv%20class%3D%26quot%3Bcsl-entry%26quot%3B%26gt%3B%26lt%3Bstrong%26gt%3BPereira%2C%20F.%26lt%3B%5C%2Fstrong%26gt%3B%2C%20Bouali%2C%20M.%2C%20Polito%2C%20P.%20S.%2C%20Da%20Silveira%2C%20I.%20C.%20A.%2C%20%26amp%3B%20Candella%2C%20R.%20N.%20%282020%29.%20Discrepancies%20between%20satellite-derived%20and%20in%20situ%20SST%20data%20in%20the%20Cape%20Frio%20Upwelling%20System%2C%20Southeastern%20Brazil%20%2823%26%23x2DA%3BS%29.%20%26lt%3Bi%26gt%3BRemote%20Sensing%20Letters%26lt%3B%5C%2Fi%26gt%3B%2C%20%26lt%3Bi%26gt%3B11%26lt%3B%5C%2Fi%26gt%3B%286%29%2C%20555%26%23x2013%3B562.%20%26lt%3Ba%20class%3D%26%23039%3Bzp-DOIURL%26%23039%3B%20href%3D%26%23039%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1080%5C%2F2150704X.2020.1742941%26%23039%3B%26gt%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1080%5C%2F2150704X.2020.1742941%26lt%3B%5C%2Fa%26gt%3B%26lt%3B%5C%2Fdiv%26gt%3B%5Cn%26lt%3B%5C%2Fdiv%26gt%3B%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Discrepancies%20between%20satellite-derived%20and%20in%20situ%20SST%20data%20in%20the%20Cape%20Frio%20Upwelling%20System%2C%20Southeastern%20Brazil%20%2823%5Cu02daS%29%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22F.%22%2C%22lastName%22%3A%22Pereira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22M.%22%2C%22lastName%22%3A%22Bouali%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22P.%20S.%22%2C%22lastName%22%3A%22Polito%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22I.%20C.%20A.%22%2C%22lastName%22%3A%22Da%20Silveira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22R.%20N.%22%2C%22lastName%22%3A%22Candella%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222020-06-02%22%2C%22section%22%3A%22%22%2C%22partNumber%22%3A%22%22%2C%22partTitle%22%3A%22%22%2C%22DOI%22%3A%2210.1080%5C%2F2150704X.2020.1742941%22%2C%22citationKey%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.tandfonline.com%5C%2Fdoi%5C%2Ffull%5C%2F10.1080%5C%2F2150704X.2020.1742941%22%2C%22PMID%22%3A%22%22%2C%22PMCID%22%3A%22%22%2C%22ISSN%22%3A%222150-704X%2C%202150-7058%22%2C%22language%22%3A%22en%22%2C%22collections%22%3A%5B%22RWED9PHD%22%5D%2C%22dateModified%22%3A%222025-05-19T22%3A28%3A43Z%22%7D%7D%2C%7B%22key%22%3A%22K59QP78V%22%2C%22library%22%3A%7B%22id%22%3A9129767%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Pereira%20et%20al.%22%2C%22parsedDate%22%3A%222019%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%26lt%3Bdiv%20class%3D%26quot%3Bcsl-bib-body%26quot%3B%20style%3D%26quot%3Bline-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%26quot%3B%26gt%3B%5Cn%20%20%26lt%3Bdiv%20class%3D%26quot%3Bcsl-entry%26quot%3B%26gt%3B%26lt%3Bstrong%26gt%3BPereira%2C%20F.%26lt%3B%5C%2Fstrong%26gt%3B%2C%20Da%20Silveira%2C%20I.%20C.%20A.%2C%20Flierl%2C%20G.%20R.%2C%20%26amp%3B%20Tandon%2C%20A.%20%282019%29.%20NPZ%20response%20to%20eddy-induced%20upwelling%20in%20a%20Brazil%20Current%20ring%3A%20A%20theoretical%20approach.%20%26lt%3Bi%26gt%3BDynamics%20of%20Atmospheres%20and%20Oceans%26lt%3B%5C%2Fi%26gt%3B%2C%20%26lt%3Bi%26gt%3B87%26lt%3B%5C%2Fi%26gt%3B%2C%20101096.%20%26lt%3Ba%20class%3D%26%23039%3Bzp-DOIURL%26%23039%3B%20href%3D%26%23039%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.dynatmoce.2019.101096%26%23039%3B%26gt%3Bhttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.dynatmoce.2019.101096%26lt%3B%5C%2Fa%26gt%3B%26lt%3B%5C%2Fdiv%26gt%3B%5Cn%26lt%3B%5C%2Fdiv%26gt%3B%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22NPZ%20response%20to%20eddy-induced%20upwelling%20in%20a%20Brazil%20Current%20ring%3A%20A%20theoretical%20approach%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Filipe%22%2C%22lastName%22%3A%22Pereira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ilson%20C.A.%22%2C%22lastName%22%3A%22Da%20Silveira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Glenn%20R.%22%2C%22lastName%22%3A%22Flierl%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Amit%22%2C%22lastName%22%3A%22Tandon%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%2209%5C%2F2019%22%2C%22section%22%3A%22%22%2C%22partNumber%22%3A%22%22%2C%22partTitle%22%3A%22%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.dynatmoce.2019.101096%22%2C%22citationKey%22%3A%22%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Flinkinghub.elsevier.com%5C%2Fretrieve%5C%2Fpii%5C%2FS0377026518301027%22%2C%22PMID%22%3A%22%22%2C%22PMCID%22%3A%22%22%2C%22ISSN%22%3A%2203770265%22%2C%22language%22%3A%22en%22%2C%22collections%22%3A%5B%22RWED9PHD%22%5D%2C%22dateModified%22%3A%222025-05-19T22%3A28%3A55Z%22%7D%7D%5D%7D
Lobo, F. J., Dos Passos Nascimento, J. L., Durán, R., López-Quirós, A., Guillén, J., Pereira, F., Rocha, C. B., & De Mahiques, M. M. (2024). Geomorphological features along the shelf of the southern Brazilian margin: Implications for shallow-water sediment transport induced by ocean currents. Geomorphology, 456, 109215. https://doi.org/10.1016/j.geomorph.2024.109215
Pereira, F., Da Silveira, I. C. A., Tandon, A., Franks, P. J. S., Luko, C. D., Santos, D. M. C., Pompeu, M., Michelazzo, L. S., Chuqui, M. G., & Brandini, F. P. (2024). Phytoplankton Responses to Mesoscale and Submesoscale Processes in a Tropical Meander. Journal of Geophysical Research: Oceans, 129(6), e2023JC020685. https://doi.org/10.1029/2023JC020685
Luko, C. D., Lazaneo, C. Z., Silveira, I. C. A. D., Pereira, F., & Tandon, A. (2023). Topographically Generated Submesoscale Shear Instabilities Associated with Brazil Current Meanders. Journal of Physical Oceanography, 53(7), 1669–1689. https://doi.org/10.1175/JPO-D-22-0122.1
Silveira, I. C. A. D., Pereira, F., Flierl, G. R., Simoes-Sousa, I. T., Palóczy, A., Borges-Silva, M., & Rocha, C. B. (2023). The Brazil Current quasi-stationary unstable meanders at 22°S–23°S. Progress in Oceanography, 210, 102925. https://doi.org/10.1016/j.pocean.2022.102925
Simoes-Sousa, I. T., Tandon, A., Pereira, F., Lazaneo, C. Z., & Mahadevan, A. (2022). Mixed layer eddies supply nutrients to enhance the spring phytoplankton bloom. Frontiers in Marine Science, 9, 825027. https://doi.org/10.3389/fmars.2022.825027
Luko, C. D., Pereira, F., Da Silveira, I. C. A., Tandon, A., & Flierl, G. R. (2022). Effects of the seasonality of mesoscale eddies on the planktonic dynamics off eastern Brazil. Dynamics of Atmospheres and Oceans, 98, 101299. https://doi.org/10.1016/j.dynatmoce.2022.101299
Pereira, F., Bouali, M., Polito, P. S., Da Silveira, I. C. A., & Candella, R. N. (2020). Discrepancies between satellite-derived and in situ SST data in the Cape Frio Upwelling System, Southeastern Brazil (23˚S). Remote Sensing Letters, 11(6), 555–562. https://doi.org/10.1080/2150704X.2020.1742941
Pereira, F., Da Silveira, I. C. A., Flierl, G. R., & Tandon, A. (2019). NPZ response to eddy-induced upwelling in a Brazil Current ring: A theoretical approach. Dynamics of Atmospheres and Oceans, 87, 101096. https://doi.org/10.1016/j.dynatmoce.2019.101096