Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers

A delayed-mode calibration procedure is presented to improve the quality of hydrographic data from CTD–Satellite Relay Data Loggers (CTD–SRDL) deployed on elephant seals. This procedure is applied on a dataset obtained with 10 CTD–SRDLs deployed at Kerguelen Islands in 2007. A comparison of CTD–SRDL...

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Published in:Journal of Atmospheric and Oceanic Technology
Main Authors: Roquet, Fabien, Charrassin, Jean-Benoit, Marchand, Stephane, Boehme, Lars, Fedak, Mike, Reverdin, Gilles, Guinet, Christophe
Format: Article in Journal/Newspaper
Language:English
Published: 2011
Subjects:
Online Access:https://risweb.st-andrews.ac.uk/portal/en/researchoutput/delayedmode-calibration-of-hydrographic-data-obtained-from-animalborne-satelliterelay-data-loggers(e03a6b0b-074d-442c-818f-fc3a17330ac1).html
https://doi.org/10.1175/2010JTECHO801.1
http://journals.ametsoc.org/doi/abs/10.1175/2010JTECHO801.1
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spelling ftunstandrewcris:oai:risweb.st-andrews.ac.uk:publications/e03a6b0b-074d-442c-818f-fc3a17330ac1 2023-05-15T13:36:00+02:00 Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers Roquet, Fabien Charrassin, Jean-Benoit Marchand, Stephane Boehme, Lars Fedak, Mike Reverdin, Gilles Guinet, Christophe 2011-06 https://risweb.st-andrews.ac.uk/portal/en/researchoutput/delayedmode-calibration-of-hydrographic-data-obtained-from-animalborne-satelliterelay-data-loggers(e03a6b0b-074d-442c-818f-fc3a17330ac1).html https://doi.org/10.1175/2010JTECHO801.1 http://journals.ametsoc.org/doi/abs/10.1175/2010JTECHO801.1 eng eng info:eu-repo/semantics/restrictedAccess Roquet , F , Charrassin , J-B , Marchand , S , Boehme , L , Fedak , M , Reverdin , G & Guinet , C 2011 , ' Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers ' , Journal of Atmospheric and Oceanic Technology , vol. 28 , no. 0 , pp. 787–801 . https://doi.org/10.1175/2010JTECHO801.1 article 2011 ftunstandrewcris https://doi.org/10.1175/2010JTECHO801.1 2021-12-26T14:19:28Z A delayed-mode calibration procedure is presented to improve the quality of hydrographic data from CTD–Satellite Relay Data Loggers (CTD–SRDL) deployed on elephant seals. This procedure is applied on a dataset obtained with 10 CTD–SRDLs deployed at Kerguelen Islands in 2007. A comparison of CTD–SRDLs with a ship-based CTD system is first presented. A pressure-effect correction, linear with pressure, is deduced for both temperature and salinity measurements. An external field effect on the conductivity sensor is also detected, inducing an additional salinity offset. The salinity offset cannot be estimated directly from the ship-based CTD comparisons, because the attachment of the CTD–SRDL on the seal head modifies the magnitude of the external field effect. Two methods are proposed for estimating a posteriori the salinity offset. The first method uses the stable salinity maximum characterizing the Lower Circumpolar Deep Water (LCDW), sampled by seals foraging south of the Southern Antarctic Circumpolar Current Front. Where this approach is not possible, a statistical method of cross-comparison of CTD–SRDLs surface salinity measurements is used over the sluggish Northern Kerguelen Plateau. Accuracies are respectively estimated as ±0.02°C for temperature and ±0.1 for derived salinity without corrections. The delayed-mode calibration significantly improves the CTD–SRDL data, improving accuracies to ±0.01°C and ±0.03, respectively. A better salinity accuracy of ±0.02 is achieved when the LCDW method can be used. For CTD–SRDLs where ship-based CTD comparisons are not available, the expected accuracy would be ±0.02°C for temperature and ±0.04 for the derived salinity. Article in Journal/Newspaper Antarc* Antarctic Elephant Seals Kerguelen Islands University of St Andrews: Research Portal Antarctic Kerguelen Kerguelen Islands Journal of Atmospheric and Oceanic Technology 28 6 787 801
institution Open Polar
collection University of St Andrews: Research Portal
op_collection_id ftunstandrewcris
language English
description A delayed-mode calibration procedure is presented to improve the quality of hydrographic data from CTD–Satellite Relay Data Loggers (CTD–SRDL) deployed on elephant seals. This procedure is applied on a dataset obtained with 10 CTD–SRDLs deployed at Kerguelen Islands in 2007. A comparison of CTD–SRDLs with a ship-based CTD system is first presented. A pressure-effect correction, linear with pressure, is deduced for both temperature and salinity measurements. An external field effect on the conductivity sensor is also detected, inducing an additional salinity offset. The salinity offset cannot be estimated directly from the ship-based CTD comparisons, because the attachment of the CTD–SRDL on the seal head modifies the magnitude of the external field effect. Two methods are proposed for estimating a posteriori the salinity offset. The first method uses the stable salinity maximum characterizing the Lower Circumpolar Deep Water (LCDW), sampled by seals foraging south of the Southern Antarctic Circumpolar Current Front. Where this approach is not possible, a statistical method of cross-comparison of CTD–SRDLs surface salinity measurements is used over the sluggish Northern Kerguelen Plateau. Accuracies are respectively estimated as ±0.02°C for temperature and ±0.1 for derived salinity without corrections. The delayed-mode calibration significantly improves the CTD–SRDL data, improving accuracies to ±0.01°C and ±0.03, respectively. A better salinity accuracy of ±0.02 is achieved when the LCDW method can be used. For CTD–SRDLs where ship-based CTD comparisons are not available, the expected accuracy would be ±0.02°C for temperature and ±0.04 for the derived salinity.
format Article in Journal/Newspaper
author Roquet, Fabien
Charrassin, Jean-Benoit
Marchand, Stephane
Boehme, Lars
Fedak, Mike
Reverdin, Gilles
Guinet, Christophe
spellingShingle Roquet, Fabien
Charrassin, Jean-Benoit
Marchand, Stephane
Boehme, Lars
Fedak, Mike
Reverdin, Gilles
Guinet, Christophe
Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers
author_facet Roquet, Fabien
Charrassin, Jean-Benoit
Marchand, Stephane
Boehme, Lars
Fedak, Mike
Reverdin, Gilles
Guinet, Christophe
author_sort Roquet, Fabien
title Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers
title_short Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers
title_full Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers
title_fullStr Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers
title_full_unstemmed Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers
title_sort delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers
publishDate 2011
url https://risweb.st-andrews.ac.uk/portal/en/researchoutput/delayedmode-calibration-of-hydrographic-data-obtained-from-animalborne-satelliterelay-data-loggers(e03a6b0b-074d-442c-818f-fc3a17330ac1).html
https://doi.org/10.1175/2010JTECHO801.1
http://journals.ametsoc.org/doi/abs/10.1175/2010JTECHO801.1
geographic Antarctic
Kerguelen
Kerguelen Islands
geographic_facet Antarctic
Kerguelen
Kerguelen Islands
genre Antarc*
Antarctic
Elephant Seals
Kerguelen Islands
genre_facet Antarc*
Antarctic
Elephant Seals
Kerguelen Islands
op_source Roquet , F , Charrassin , J-B , Marchand , S , Boehme , L , Fedak , M , Reverdin , G & Guinet , C 2011 , ' Delayed-mode calibration of hydrographic data obtained from animal-borne satellite-relay data loggers ' , Journal of Atmospheric and Oceanic Technology , vol. 28 , no. 0 , pp. 787–801 . https://doi.org/10.1175/2010JTECHO801.1
op_rights info:eu-repo/semantics/restrictedAccess
op_doi https://doi.org/10.1175/2010JTECHO801.1
container_title Journal of Atmospheric and Oceanic Technology
container_volume 28
container_issue 6
container_start_page 787
op_container_end_page 801
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