The tropical Atlantic observing system

dc.contributor.author Foltz, Gregory R.
dc.contributor.author Brandt, Peter
dc.contributor.author Richter, Ingo
dc.contributor.author Rodriguez-fonseca, Belen
dc.contributor.author Hernandez, Fabrice
dc.contributor.author Dengler, Marcus
dc.contributor.author Rodrigues, Regina
dc.contributor.author Schmidt, Jörn Oliver
dc.contributor.author Yu, Lisan
dc.contributor.author Lefevre, Nathalie
dc.contributor.author Cotrim Da Cunha, Leticia
dc.contributor.author McPhaden, Michael J.
dc.contributor.author Araujo, Moacyr
dc.contributor.author Karstensen, Johannes
dc.contributor.author Hahn, Johannes
dc.contributor.author Martín-Rey, Marta
dc.contributor.author Patricola, Christina
dc.contributor.author Poli, Paul
dc.contributor.author Zuidema, Paquita
dc.contributor.author Hummels, Rebecca
dc.contributor.author Perez, Renellys
dc.contributor.author Hatje, Vanessa
dc.contributor.author Luebbecke, Joke
dc.contributor.author Polo, Irene
dc.contributor.author Lumpkin, Rick
dc.contributor.author Bourlès, Bernard
dc.contributor.author Asuquo, Francis Emile
dc.contributor.author Lehodey, Patrick
dc.contributor.author Conchon, Anna
dc.contributor.author Chang, Ping
dc.contributor.author Dandin, Philippe
dc.contributor.author Schmid, Claudia
dc.contributor.author Sutton, Adrienne J.
dc.contributor.author Giordani, Hervé
dc.contributor.author Xue, Yan
dc.contributor.author Illig, Serena
dc.contributor.author Losada, Teresa
dc.contributor.author Grodsky, Semyon A.
dc.contributor.author Gasparin, Florent
dc.contributor.author Lee, Tong
dc.contributor.author Mohino, Elsa
dc.contributor.author Nobre, Paulo
dc.contributor.author Wanninkhof, Rik
dc.contributor.author Keenlyside, Noel S.
dc.contributor.author Garcon, Veronique Cameille
dc.contributor.author Sanchez-Gomez, Emilia
dc.contributor.author Nnamchi, Hyacinth
dc.contributor.author Drevillon, Marie
dc.contributor.author Storto, Andrea
dc.contributor.author Remy, Elisabeth
dc.contributor.author Lazar, Alban
dc.contributor.author Speich, Sabrina
dc.contributor.author Goes, Marlos Pereira
dc.contributor.author Dorrington, Tarquin
dc.contributor.author Johns, William E.
dc.contributor.author Moum, James N.
dc.contributor.author Robinson, Carol
dc.contributor.author Perruche, Coralie
dc.contributor.author de Souza, Ronald Buss
dc.contributor.author Gaye, Amadou
dc.contributor.author Lopez-Parages, Jorge
dc.contributor.author Monerie, Paul-Arthur
dc.contributor.author Castellanos, Paola
dc.contributor.author Benson, Nsikak U.
dc.contributor.author Hounkonnou, Mahouton Norbert
dc.contributor.author Trotte Duha, Janice
dc.contributor.author Laxenaire, Rémi
dc.contributor.author Reul, Nicolas
dc.date.accessioned 2019-07-01T14:12:14Z
dc.date.available 2019-07-01T14:12:14Z
dc.date.issued 2019-05-10
dc.description © The Author(s), 2019. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Foltz, G. R., Brandt, P., Richter, I., Rodriguez-Fonsecao, B., Hernandez, F., Dengler, M., Rodrigues, R. R., Schmidt, J. O., Yu, L., Lefevre, N., Da Cunha, L. C., Mcphaden, M. J., Araujo, M., Karstensen, J., Hahn, J., Martin-Rey, M., Patricola, C. M., Poli, P., Zuidema, P., Hummels, R., Perez, R. C., Hatje, V., Luebbecke, J. F., Palo, I., Lumpkin, R., Bourles, B., Asuquo, F. E., Lehodey, P., Conchon, A., Chang, P., Dandin, P., Schmid, C., Sutton, A., Giordani, H., Xue, Y., Illig, S., Losada, T., Grodsky, S. A., Gasparinss, F., Lees, T., Mohino, E., Nobre, P., Wanninkhof, R., Keenlyside, N., Garcon, V., Sanchez-Gomez, E., Nnamchi, H. C., Drevillon, M., Storto, A., Remy, E., Lazar, A., Speich, S., Goes, M., Dorrington, T., Johns, W. E., Moum, J. N., Robinson, C., Perruches, C., de Souza, R. B., Gaye, A. T., Lopez-Paragess, J., Monerie, P., Castellanos, P., Benson, N. U., Hounkonnou, M. N., Trotte Duha, J., Laxenairess, R., & Reul, N. The tropical Atlantic observing system. Frontiers in Marine Science, 6(206), (2019), doi:10.3389/fmars.2019.00206. en_US
dc.description.abstract he tropical Atlantic is home to multiple coupled climate variations covering a wide range of timescales and impacting societally relevant phenomena such as continental rainfall, Atlantic hurricane activity, oceanic biological productivity, and atmospheric circulation in the equatorial Pacific. The tropical Atlantic also connects the southern and northern branches of the Atlantic meridional overturning circulation and receives freshwater input from some of the world’s largest rivers. To address these diverse, unique, and interconnected research challenges, a rich network of ocean observations has developed, building on the backbone of the Prediction and Research Moored Array in the Tropical Atlantic (PIRATA). This network has evolved naturally over time and out of necessity in order to address the most important outstanding scientific questions and to improve predictions of tropical Atlantic severe weather and global climate variability and change. The tropical Atlantic observing system is motivated by goals to understand and better predict phenomena such as tropical Atlantic interannual to decadal variability and climate change; multidecadal variability and its links to the meridional overturning circulation; air-sea fluxes of CO2 and their implications for the fate of anthropogenic CO2; the Amazon River plume and its interactions with biogeochemistry, vertical mixing, and hurricanes; the highly productive eastern boundary and equatorial upwelling systems; and oceanic oxygen minimum zones, their impacts on biogeochemical cycles and marine ecosystems, and their feedbacks to climate. Past success of the tropical Atlantic observing system is the result of an international commitment to sustained observations and scientific cooperation, a willingness to evolve with changing research and monitoring needs, and a desire to share data openly with the scientific community and operational centers. The observing system must continue to evolve in order to meet an expanding set of research priorities and operational challenges. This paper discusses the tropical Atlantic observing system, including emerging scientific questions that demand sustained ocean observations, the potential for further integration of the observing system, and the requirements for sustaining and enhancing the tropical Atlantic observing system. en_US
dc.description.sponsorship MM-R received funding from the MORDICUS grant under contract ANR-13-SENV-0002-01 and the MSCA-IF-EF-ST FESTIVAL (H2020-EU project 797236). GF, MG, RLu, RP, RW, and CS were supported by NOAA/OAR through base funds to AOML and the Ocean Observing and Monitoring Division (OOMD; fund reference 100007298). This is NOAA/PMEL contribution #4918. PB, MDe, JH, RH, and JL are grateful for continuing support from the GEOMAR Helmholtz Centre for Ocean Research Kiel. German participation is further supported by different programs funded by the Deutsche Forschungsgemeinschaft, the Deutsche Bundesministerium für Bildung und Forschung (BMBF), and the European Union. The EU-PREFACE project funded by the EU FP7/2007–2013 programme (Grant No. 603521) contributed to results synthesized here. LCC was supported by the UERJ/Prociencia-2018 research grant. JOS received funding from the Cluster of Excellence Future Ocean (EXC80-DFG), the EU-PREFACE project (Grant No. 603521) and the BMBF-AWA project (Grant No. 01DG12073C). en_US
dc.identifier.citation Foltz, G. R., Brandt, P., Richter, I., Rodriguez-Fonsecao, B., Hernandez, F., Dengler, M., Rodrigues, R. R., Schmidt, J. O., Yu, L., Lefevre, N., Da Cunha, L. C., Mcphaden, M. J., Araujo, M., Karstensen, J., Hahn, J., Martin-Rey, M., Patricola, C. M., Poli, P., Zuidema, P., Hummels, R., Perez, R. C., Hatje, V., Luebbecke, J. F., Palo, I., Lumpkin, R., Bourles, B., Asuquo, F. E., Lehodey, P., Conchon, A., Chang, P., Dandin, P., Schmid, C., Sutton, A., Giordani, H., Xue, Y., Illig, S., Losada, T., Grodsky, S. A., Gasparinss, F., Lees, T., Mohino, E., Nobre, P., Wanninkhof, R., Keenlyside, N., Garcon, V., Sanchez-Gomez, E., Nnamchi, H. C., Drevillon, M., Storto, A., Remy, E., Lazar, A., Speich, S., Goes, M., Dorrington, T., Johns, W. E., Moum, J. N., Robinson, C., Perruches, C., de Souza, R. B., Gaye, A. T., Lopez-Paragess, J., Monerie, P., Castellanos, P., Benson, N. U., Hounkonnou, M. N., Trotte Duha, J., Laxenairess, R., & Reul, N. (2019). The tropical Atlantic observing system. Frontiers in Marine Science, 6, 206. en_US
dc.identifier.doi 10.3389/fmars.2019.00206
dc.identifier.uri https://hdl.handle.net/1912/24298
dc.publisher Frontiers Media en_US
dc.relation.uri https://doi.org/10.3389/fmars.2019.00206
dc.rights Attribution 4.0 International *
dc.rights.uri http://creativecommons.org/licenses/by/4.0/ *
dc.subject Tropical Atlantic Ocean en_US
dc.subject Observing system en_US
dc.subject Weather en_US
dc.subject Climate en_US
dc.subject Hurricanes en_US
dc.subject Biogeochemistry en_US
dc.subject Ecosystems en_US
dc.subject Coupled model bias en_US
dc.title The tropical Atlantic observing system en_US
dc.type Article en_US
dspace.entity.type Publication
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