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Registros recuperados: 128
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French National Report on Argo - 2015. Present status and future plans ArchiMer
Maze, Guillaume; Cabanes, Cecile; Carval, Thierry; Coatanoan, Christine; D'Ortenzio, Fabrizio; Kolodziejczyk, Nicolas; Lebreton, Nathanaele; Le Traon, Pierre-yves; Poffa, Noe; Pouliquen, Sylvie; Thierry, Virginie.
Tipo: Text
Ano: 2016 URL: http://archimer.ifremer.fr/doc/00318/42967/42474.pdf
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Argo workshop in Ghana, December 2006 ArchiMer
Pouliquen, Sylvie; Thierry, Virginie; Coatanoan, Christine; Gaillard, Fabienne; Poulain, Pm; Carval, Thierry.
Tipo: Text
Ano: 2006 URL: http://archimer.ifremer.fr/doc/2006/acte-6147.pdf
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Surface Pressure of PROVOR/ARVOR floats based on Coriolis GDAC at 19/09/2012 ArchiMer
Cabanes, Cecile; Thierry, Virginie.
In this report, we check the surface pressure of the Argo PROVOR-ARVOR fleet to detect drift and problems of the pressure sensors. For each DAC and for each float model, we count how many floats have surface pressure (SP) that exeeds 5dB (absolute value). Negative drift are associated with microleak of the Druck pressure sensor. Surface pressure problems at the end of the life of the float might be related to the ”snowflakes” problem. Other surface pressure problems occur and part of them might be related to decoding problems (jump,shift,..)  
Tipo: Text
Ano: 2012 URL: http://archimer.ifremer.fr/doc/00405/51632/52188.pdf
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Le projet Equipex NAOS : l'observation globale des océans Préparation de la nouvelle décennie d'Argo ArchiMer
Le Traon, Pierre-yves; D'Ortenzio, Fabrizio; Babin, Marcel; Claustre, Hervé; Pouliquen, Sylvie; Le Reste, Serge; Thierry, Virginie; Brault, Patrice; Guigue, Michel; Le Menn, Marc.
NAOS (Novel Argo Ocean observing System) is one of the 52 projects selected as part of the Equipex call for proposals from the French programme d'investissements d'avenir. The overall objective of the project is to consolidate and improve the French and European contribution to the international Argo observing system and to prepare the next decade of Argo. The challenge is to set up an effective monitoring of the world ocean and to strengthen French leadership in ocean and climate research and prediction.
Tipo: Text Palavras-chave: Méthode d'observation océanographique; Réchauffement climatique; Prévision climatique; Salinité de l'eau; Température de l'eau; Océan mondial; Altimètre radar; CO2; Tempête; Cyclone tropical; Mousson; El-Niño; Circulation générale océanique; Climatologie océanographique; Modèle couplé océan-atmosphère; Modèle climatique.
Ano: 2012 URL: http://archimer.ifremer.fr/doc/00117/22801/20608.pdf
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NAOS : preparing the new decade for Argo ArchiMer
Le Traon, Pierre-yves; D'Ortenzio, Fabrizio; Babin, M.; Claustre, H.; Pouliquen, Sylvie; Le Reste, Serge; Thierry, Virginie; Brault, Patrice; Guigue, Michel; Le Menn, M..
Tipo: Text
Ano: 2012 URL: http://archimer.ifremer.fr/doc/00114/22556/20244.pdf
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New insight into the formation and evolution of the East Reykjanes Ridge Current and Irminger Current ArchiMer
Petit, Tillys; Mercier, Herle; Thierry, Virginie.
The Reykjanes Ridge strongly influences the circulation of the North Atlantic Subpolar Gyre as it flows to the Irminger Sea from the Iceland Basin. The circulation is composed of two main along‐ridge currents: the southwestward East Reykjanes Ridge Current (ERRC) in the Iceland Basin and the northeastward Irminger Current (IC) in the Irminger Sea. To study their interconnection through the ridge, as well as their connections with the interior of each basin, velocity and hydrological measurements were carried out along and perpendicular to the crest of the Reykjanes Ridge in June–July 2015 as part of the RREX project. This new dataset changes our view of the ERRC and IC as it reveals undocumented along‐stream evolutions of their hydrological properties,...
Tipo: Text Palavras-chave: North-Atlantic Subpolar Gyre; Bathymetry; Oceanic circulation; Observations.
Ano: 2019 URL: https://archimer.ifremer.fr/doc/00591/70347/68407.pdf
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Delayed mode quality control of Ovide Argo Data. Float WMO 5902301 ArchiMer
Lagadec, Catherine; Thierry, Virginie.
This report presents the delayed mode analysis of an Argo float. Real time quality control flags are checked and interesting profiles are plotted. The OW method (objective analysis) is used to detect a conductivity sensor drift and correct it, if any.
Tipo: Text
Ano: 2013 URL: http://archimer.ifremer.fr/doc/00311/42187/41487.pdf
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Delayed mode quality control and Oxygen correction of Ovide Argo data. Float WMO 5902297 ArchiMer
Lagadec, Catherine; Thierry, Virginie; Cabanes, Cecile.
This report presents the delayed mode analysis of an Argo float. Real time quality control flags are checked and interesting profiles are plotted. The OW methode (objective analysis) is used to detect a conductivity sensor drift and correct it, if any. In this report, are also explained and plotted Oxygen corrections with Locodox software.
Tipo: Text
Ano: 2017 URL: http://archimer.ifremer.fr/doc/00390/50107/50714.pdf
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Delayed mode quality control of Ovide Argo data - float WMO 6900494 ArchiMer
Lagadec, Catherine; Thierry, Virginie; Cabanes, Cecile.
This report presents the delayed mode analysis of an Argo float. Real time quality control flags are checked and interesting profiles are plotted. The OW method (objective analysis) is used to detect a conductivity sensor drift and correct it, if any.
Tipo: Text
Ano: 2015 URL: http://archimer.ifremer.fr/doc/00312/42299/41631.pdf
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French National Report on Argo - 2019 ArchiMer
Maze, Guillaume; Andre, Xavier; Cabanes, Cécile; Carval, Thierry; Claustre, Hervé; Coatanoan, Christine; D'Ortenzio, Fabrizio; Kolodziejczyk, Nicolas; Lebreton, Nathanaele; Le Traon, Pierre-yves; Poteau, Antoine; Poffa, Noe; Pouliquen, Sylvie; Sauzede, Raphaëlle; Schmechtig, Catherine; Thierry, Virginie.
Tipo: Text
Ano: 2020 URL: https://archimer.ifremer.fr/doc/00620/73198/72392.pdf
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Delayed mode quality control of Ovide Argo Data. Float WMO 6900639 ArchiMer
Lagadec, Catherine; Thierry, Virginie.
This report presents the delayed mode analysis of an Argo float. Real time quality control flags are checked and interesting profiles are plotted. The OW method (objective analysis) is used to detect a conductivity sensor drift and correct it, if any.
Tipo: Text
Ano: 2012 URL: http://archimer.ifremer.fr/doc/00310/42132/41445.pdf
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Delayed mode quality control of Ovide Argo data. Float WMO 6901570 ArchiMer
Lagadec, Catherine; Thierry, Virginie; Cabanes, Cecile.
This report presents the delayed mode analysis of an Argo float. Real time quality control flags are checked and interesting profiles are plotted. The OW methode (objective analysis) is used to detect a conductivity sensor drift and correct it, if any. Cruise reference : GEOVIDE 2014. Pourquoi Pas ? PI : G. SARTHOU - P. LHERMINIER
Tipo: Text
Ano: 2017 URL: http://archimer.ifremer.fr/doc/00406/51778/52376.pdf
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French National Report on Argo - 2014. Present status and future plans ArchiMer
Maze, Guillaume; Cabanes, Cécile; Carval, Thierry; Coatanoan, Christine; D'Ortenzio, Fabrizio; Lebreton, Nathanaelle; Le Reste, Serge; Le Traon, Pierre-yves; Pouliquen, Sylvie; Thierry, Virginie.
Tipo: Text
Ano: 2015 URL: http://archimer.ifremer.fr/doc/00254/36504/35050.pdf
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Delayed mode quality control of Ovide Argo data - float WMO 6900495 ArchiMer
Lagadec, Catherine; Thierry, Virginie; Cabanes, Cecile.
This report presents the delayed mode analysis of an Argo float. Real time quality control flags are checked and interesting profiles are plotted. The OW method (objective analysis) is used to detect a conductivity sensor drift and correct it, if any.
Tipo: Text
Ano: 2015 URL: http://archimer.ifremer.fr/doc/00312/42300/41632.pdf
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Delayed mode quality control of Ovide Argo Data. Float WMO 6900404 ArchiMer
Lagadec, Catherine; Thierry, Virginie; Cabanes, Cecile.
This report presents the delayed mode analysis of an Argo float. Real time quality control flags are checked and interesting profiles are plotted. The OW method (objective analysis) is used to detect a conductivity sensor drift and correct it, if any.
Tipo: Text
Ano: 2015 URL: http://archimer.ifremer.fr/doc/00311/42196/41511.pdf
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Delayed mode quality control of Ovide Argo Data. Float WMO 6900405 ArchiMer
Lagadec, Catherine; Thierry, Virginie.
This report presents the delayed mode analysis of an Argo float. Real time quality control flags are checked and interesting profiles are plotted. The OW method (objective analysis) is used to detect a conductivity sensor drift and correct it, if any.
Tipo: Text
Ano: 2012 URL: http://archimer.ifremer.fr/doc/00310/42123/41437.pdf
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Delayed mode quality control of Ovide Argo Data. Float WMO 6900396 ArchiMer
Lagadec, Catherine; Thierry, Virginie.
This report plots QC flags checks and interesting profiles. It explains parameters for determination of a drift (or not) in salinity from the OW method (objective analysis).
Tipo: Text
Ano: 2009 URL: http://archimer.ifremer.fr/doc/00310/42109/41416.pdf
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A BGC-Argo Guide: Planning, Deployment, Data Handling and Usage ArchiMer
Bittig, Henry C.; Maurer, Tanya L.; Plant, Joshua N.; Schmechtig, Catherine; Wong, Annie P. S.; Claustre, Hervé; Trull, Thomas W.; Udaya Bhaskar, T. V. S.; Boss, Emmanuel; Dall’olmo, Giorgio; Organelli, Emanuele; Poteau, Antoine; Johnson, Kenneth S.; Hanstein, Craig; Leymarie, Edouard; Le Reste, Serge; Riser, Stephen C.; Rupan, A. Rick; Taillandier, Vincent; Thierry, Virginie; Xing, Xiaogang.
The Biogeochemical-Argo program (BGC-Argo) is a new profiling-float-based, ocean wide, and distributed ocean monitoring program which is tightly linked to, and has benefited significantly from, the Argo program. The community has recommended for BGC-Argo to measure six additional properties in addition to pressure, temperature and salinity measured by Argo, to include oxygen, pH, nitrate, downwelling light, chlorophyll fluorescence and the optical backscattering coefficient. The purpose of this addition is to enable the monitoring of ocean biogeochemistry and health, and in particular, monitor major processes such as ocean deoxygenation, acidification and warming and their effect on phytoplankton, the main source of energy of marine ecosystems. Here we...
Tipo: Text Palavras-chave: Ocean observation; Ocean biogeochemical cycles; Sensors; Carbon cycle; Ocean optics; Best practices; Argo.
Ano: 2019 URL: https://archimer.ifremer.fr/doc/00512/62344/66607.pdf
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Delayed mode quality control and Oxygen correction of Ovide Argo data. Float WMO 5902304 ArchiMer
Lagadec, Catherine; Thierry, Virginie; Cabanes, Cecile.
This report presents the delayed mode analysis of an Argo float. Real time quality control are checked and interesting profiles are plotted. The OW method (objective analysis) is used to detect a conductivity sensor drift and correct it, if any. In this report, are also explained and plotted Oxygen corrections with LOCODOX software.
Tipo: Text
Ano: 2017 URL: http://archimer.ifremer.fr/doc/00406/51750/52347.pdf
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Deep-Arvor: The results of the first industrial prototype deployment ArchiMer
Dutreuil, Vincent; Le Reste, Serge; Thierry, Virginie; Andre, Xavier; Lenault, Yannick; Renaut, Corentin; Brault, Patrice; Sagot, Jerome; David, Arnaud.
Deep-Arvor was designed by Ifremer to achieve more than 150 profiles from 4,000 meters depth, with CTD continuously pumping and oxygen measurements. After the validation of two first models at the sea, the industrialization has been entrusted to NKE. The first constructed prototypes of Deep-Arvor have been deployed successfully in May 2014. Thanks to its light weight, Deep-Arvor maintains the self-ballasting feature of Provor/Arvor and the easy deployment of Arvor. High resolution profiles are transmitted by the Iridium satellite system.
Tipo: Text
Ano: 2014 URL: http://archimer.ifremer.fr/doc/00222/33347/31748.pdf
Registros recuperados: 128
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