Vertical distribution of water mass properties under the influence of subglacial discharge in Bowdoin Fjord, northwestern Greenland

Subglacial discharge has significant impacts on water circulation, material transport, and biological productivity in proglacial fjords of Greenland. To help clarify the fjord water properties and the effect of subglacial discharge, we investigated the properties of vertical water mass profiles of B...

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Published in:Ocean Science
Main Authors: Y. Ohashi, S. Aoki, Y. Matsumura, S. Sugiyama, N. Kanna, D. Sakakibara
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2020
Subjects:
geo
Online Access:https://doi.org/10.5194/os-16-545-2020
https://www.ocean-sci.net/16/545/2020/os-16-545-2020.pdf
https://doaj.org/article/681dfc8d64e94888b2a057e84cf71ac6
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spelling fttriple:oai:gotriple.eu:oai:doaj.org/article:681dfc8d64e94888b2a057e84cf71ac6 2023-05-15T16:27:10+02:00 Vertical distribution of water mass properties under the influence of subglacial discharge in Bowdoin Fjord, northwestern Greenland Y. Ohashi S. Aoki Y. Matsumura S. Sugiyama N. Kanna D. Sakakibara 2020-05-01 https://doi.org/10.5194/os-16-545-2020 https://www.ocean-sci.net/16/545/2020/os-16-545-2020.pdf https://doaj.org/article/681dfc8d64e94888b2a057e84cf71ac6 en eng Copernicus Publications doi:10.5194/os-16-545-2020 1812-0784 1812-0792 https://www.ocean-sci.net/16/545/2020/os-16-545-2020.pdf https://doaj.org/article/681dfc8d64e94888b2a057e84cf71ac6 undefined Ocean Science, Vol 16, Pp 545-564 (2020) envir geo Journal Article https://vocabularies.coar-repositories.org/resource_types/c_6501/ 2020 fttriple https://doi.org/10.5194/os-16-545-2020 2023-01-22T18:03:49Z Subglacial discharge has significant impacts on water circulation, material transport, and biological productivity in proglacial fjords of Greenland. To help clarify the fjord water properties and the effect of subglacial discharge, we investigated the properties of vertical water mass profiles of Bowdoin Fjord in northwestern Greenland based on summer hydrographic observations, including turbidity, in 2014 and 2016. We estimated the fraction of subglacial discharge from the observational data and interpreted the observed differences in subglacial plume behavior between two summer seasons with the numerical model results. At a depth of 15–40 m, where the most turbid water was observed, the maximum subglacial discharge fractions near the ice front were estimated to be ∼6 % in 2014 and ∼4 % in 2016. The higher discharge fraction in 2014 was likely due to stronger stratification, as suggested by the numerical experiments performed with different initial stratifications. Turbidity near the surface was higher in 2016 than in 2014, suggesting a stronger influence of turbid subglacial discharge. The higher turbidity in 2016 could primarily be attributed to a greater amount of subglacial discharge, as inferred from the numerical experiments forced by different amounts of discharge. This study suggests that both fjord stratification and the amount of discharge are important factors in controlling the vertical distribution of freshwater outflow. Article in Journal/Newspaper Greenland Unknown Bowdoin ENVELOPE(-69.317,-69.317,77.683,77.683) Bowdoin Fjord ENVELOPE(-68.521,-68.521,77.598,77.598) Greenland Ocean Science 16 3 545 564
institution Open Polar
collection Unknown
op_collection_id fttriple
language English
topic envir
geo
spellingShingle envir
geo
Y. Ohashi
S. Aoki
Y. Matsumura
S. Sugiyama
N. Kanna
D. Sakakibara
Vertical distribution of water mass properties under the influence of subglacial discharge in Bowdoin Fjord, northwestern Greenland
topic_facet envir
geo
description Subglacial discharge has significant impacts on water circulation, material transport, and biological productivity in proglacial fjords of Greenland. To help clarify the fjord water properties and the effect of subglacial discharge, we investigated the properties of vertical water mass profiles of Bowdoin Fjord in northwestern Greenland based on summer hydrographic observations, including turbidity, in 2014 and 2016. We estimated the fraction of subglacial discharge from the observational data and interpreted the observed differences in subglacial plume behavior between two summer seasons with the numerical model results. At a depth of 15–40 m, where the most turbid water was observed, the maximum subglacial discharge fractions near the ice front were estimated to be ∼6 % in 2014 and ∼4 % in 2016. The higher discharge fraction in 2014 was likely due to stronger stratification, as suggested by the numerical experiments performed with different initial stratifications. Turbidity near the surface was higher in 2016 than in 2014, suggesting a stronger influence of turbid subglacial discharge. The higher turbidity in 2016 could primarily be attributed to a greater amount of subglacial discharge, as inferred from the numerical experiments forced by different amounts of discharge. This study suggests that both fjord stratification and the amount of discharge are important factors in controlling the vertical distribution of freshwater outflow.
format Article in Journal/Newspaper
author Y. Ohashi
S. Aoki
Y. Matsumura
S. Sugiyama
N. Kanna
D. Sakakibara
author_facet Y. Ohashi
S. Aoki
Y. Matsumura
S. Sugiyama
N. Kanna
D. Sakakibara
author_sort Y. Ohashi
title Vertical distribution of water mass properties under the influence of subglacial discharge in Bowdoin Fjord, northwestern Greenland
title_short Vertical distribution of water mass properties under the influence of subglacial discharge in Bowdoin Fjord, northwestern Greenland
title_full Vertical distribution of water mass properties under the influence of subglacial discharge in Bowdoin Fjord, northwestern Greenland
title_fullStr Vertical distribution of water mass properties under the influence of subglacial discharge in Bowdoin Fjord, northwestern Greenland
title_full_unstemmed Vertical distribution of water mass properties under the influence of subglacial discharge in Bowdoin Fjord, northwestern Greenland
title_sort vertical distribution of water mass properties under the influence of subglacial discharge in bowdoin fjord, northwestern greenland
publisher Copernicus Publications
publishDate 2020
url https://doi.org/10.5194/os-16-545-2020
https://www.ocean-sci.net/16/545/2020/os-16-545-2020.pdf
https://doaj.org/article/681dfc8d64e94888b2a057e84cf71ac6
long_lat ENVELOPE(-69.317,-69.317,77.683,77.683)
ENVELOPE(-68.521,-68.521,77.598,77.598)
geographic Bowdoin
Bowdoin Fjord
Greenland
geographic_facet Bowdoin
Bowdoin Fjord
Greenland
genre Greenland
genre_facet Greenland
op_source Ocean Science, Vol 16, Pp 545-564 (2020)
op_relation doi:10.5194/os-16-545-2020
1812-0784
1812-0792
https://www.ocean-sci.net/16/545/2020/os-16-545-2020.pdf
https://doaj.org/article/681dfc8d64e94888b2a057e84cf71ac6
op_rights undefined
op_doi https://doi.org/10.5194/os-16-545-2020
container_title Ocean Science
container_volume 16
container_issue 3
container_start_page 545
op_container_end_page 564
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