Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool

Turbulent exchanges under sea ice play a controlling role in ice mass balance, ice drift, biogeochemistry, and mixed layer modification. In this study, we examined the potential to measure under-ice turbulent exchanges of heat, salt, momentum, and dissolved oxygen using eddy covariance in an experim...

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Published in:Cold Regions Science and Technology
Main Authors: Else, Brent, Rysgaard, Søren, Attard, Karl, Campbell, K, Crabeck, O, Galley, R.J., Geilfus, N.-X., Lemes, M, Lueck, R, Papakyriakou, T, Wang, F
Format: Article in Journal/Newspaper
Language:English
Published: 2015
Subjects:
Online Access:https://portal.findresearcher.sdu.dk/da/publications/30866309-69ad-4ab6-a1df-dbdc1a2654e5
https://doi.org/10.1016/j.coldregions.2015.06.018
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spelling ftsydanskunivpub:oai:sdu.dk:publications/30866309-69ad-4ab6-a1df-dbdc1a2654e5 2023-05-15T18:17:25+02:00 Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool Else, Brent Rysgaard, Søren Attard, Karl Campbell, K Crabeck, O Galley, R.J. Geilfus, N.-X. Lemes, M Lueck, R Papakyriakou, T Wang, F 2015-09 https://portal.findresearcher.sdu.dk/da/publications/30866309-69ad-4ab6-a1df-dbdc1a2654e5 https://doi.org/10.1016/j.coldregions.2015.06.018 eng eng info:eu-repo/semantics/restrictedAccess Else , B , Rysgaard , S , Attard , K , Campbell , K , Crabeck , O , Galley , R J , Geilfus , N-X , Lemes , M , Lueck , R , Papakyriakou , T & Wang , F 2015 , ' Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool ' , Cold Regions Science and Technology , vol. 119 , pp. 158-169 . https://doi.org/10.1016/j.coldregions.2015.06.018 article 2015 ftsydanskunivpub https://doi.org/10.1016/j.coldregions.2015.06.018 2022-08-14T09:15:08Z Turbulent exchanges under sea ice play a controlling role in ice mass balance, ice drift, biogeochemistry, and mixed layer modification. In this study, we examined the potential to measure under-ice turbulent exchanges of heat, salt, momentum, and dissolved oxygen using eddy covariance in an experimental sea ice facility. Over a 15-day period in January 2013, an underwater eddy covariance system was deployed in a large (500 m3) inground concrete pool, which was filled with artificial seawater and exposed to the ambient (−5 to −30 °C) atmosphere. Turbulent exchanges were measured continuously as ice grew from 5 to 25 cm thick. Heat, momentum, and dissolved oxygen fluxes were all successfully derived. Quantification of salt fluxes was unsuccessful due to noise in the conductivity sensor, a problem which appears to be resolved in a subsequent version of the instrument. Heat fluxes during initial ice growth were directed upward at 10 to 25 W m−2. Dissolved oxygen fluxes were directed downward at rates of 5 to 50mmolm−2 d−1 throughout the experiment, at times exceeding the expected amount of oxygen rejected with the brine during ice growth. Bubble formation and dissolution was identified as one possible cause of the high fluxes. Momentum fluxes showed interesting correlations with ice growth and melt but were generally higher than expected. We concluded that with the exception of the conductivity sensor, the eddy covariance system worked well, and that useful information about turbulent exchanges under thin ice can be obtained from an experimental sea ice facility of this size. Article in Journal/Newspaper Sea ice University of Southern Denmark Research Portal Cold Regions Science and Technology 119 158 169
institution Open Polar
collection University of Southern Denmark Research Portal
op_collection_id ftsydanskunivpub
language English
description Turbulent exchanges under sea ice play a controlling role in ice mass balance, ice drift, biogeochemistry, and mixed layer modification. In this study, we examined the potential to measure under-ice turbulent exchanges of heat, salt, momentum, and dissolved oxygen using eddy covariance in an experimental sea ice facility. Over a 15-day period in January 2013, an underwater eddy covariance system was deployed in a large (500 m3) inground concrete pool, which was filled with artificial seawater and exposed to the ambient (−5 to −30 °C) atmosphere. Turbulent exchanges were measured continuously as ice grew from 5 to 25 cm thick. Heat, momentum, and dissolved oxygen fluxes were all successfully derived. Quantification of salt fluxes was unsuccessful due to noise in the conductivity sensor, a problem which appears to be resolved in a subsequent version of the instrument. Heat fluxes during initial ice growth were directed upward at 10 to 25 W m−2. Dissolved oxygen fluxes were directed downward at rates of 5 to 50mmolm−2 d−1 throughout the experiment, at times exceeding the expected amount of oxygen rejected with the brine during ice growth. Bubble formation and dissolution was identified as one possible cause of the high fluxes. Momentum fluxes showed interesting correlations with ice growth and melt but were generally higher than expected. We concluded that with the exception of the conductivity sensor, the eddy covariance system worked well, and that useful information about turbulent exchanges under thin ice can be obtained from an experimental sea ice facility of this size.
format Article in Journal/Newspaper
author Else, Brent
Rysgaard, Søren
Attard, Karl
Campbell, K
Crabeck, O
Galley, R.J.
Geilfus, N.-X.
Lemes, M
Lueck, R
Papakyriakou, T
Wang, F
spellingShingle Else, Brent
Rysgaard, Søren
Attard, Karl
Campbell, K
Crabeck, O
Galley, R.J.
Geilfus, N.-X.
Lemes, M
Lueck, R
Papakyriakou, T
Wang, F
Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool
author_facet Else, Brent
Rysgaard, Søren
Attard, Karl
Campbell, K
Crabeck, O
Galley, R.J.
Geilfus, N.-X.
Lemes, M
Lueck, R
Papakyriakou, T
Wang, F
author_sort Else, Brent
title Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool
title_short Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool
title_full Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool
title_fullStr Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool
title_full_unstemmed Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool
title_sort under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool
publishDate 2015
url https://portal.findresearcher.sdu.dk/da/publications/30866309-69ad-4ab6-a1df-dbdc1a2654e5
https://doi.org/10.1016/j.coldregions.2015.06.018
genre Sea ice
genre_facet Sea ice
op_source Else , B , Rysgaard , S , Attard , K , Campbell , K , Crabeck , O , Galley , R J , Geilfus , N-X , Lemes , M , Lueck , R , Papakyriakou , T & Wang , F 2015 , ' Under-ice eddy covariance flux measurements of heat, salt, momentum, and dissolved oxygen in an artificial sea ice pool ' , Cold Regions Science and Technology , vol. 119 , pp. 158-169 . https://doi.org/10.1016/j.coldregions.2015.06.018
op_rights info:eu-repo/semantics/restrictedAccess
op_doi https://doi.org/10.1016/j.coldregions.2015.06.018
container_title Cold Regions Science and Technology
container_volume 119
container_start_page 158
op_container_end_page 169
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