Data_Sheet_1_Seasonal Evolution of Cape Darnley Bottom Water Revealed by Mooring Measurements.pdf

This study examines the seasonal evolution of Cape Darnley Bottom Water (CDBW), using the results of mooring and hydrographic measurements in the slope region off Cape Darnley in 2008–2009 and 2013–2014. Newly formed CDBW began reaching the western and nearshore part of the slope region off Cape Dar...

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Bibliographic Details
Main Authors: Genta Mizuta, Yasushi Fukamachi, Daisuke Simizu, Yoshimasa Matsumura, Yujiro Kitade, Daisuke Hirano, Masakazu Fujii, Yoshifumi Nogi, Kay I. Ohshima
Format: Dataset
Language:unknown
Published: 2021
Subjects:
Online Access:https://doi.org/10.3389/fmars.2021.657119.s001
https://figshare.com/articles/dataset/Data_Sheet_1_Seasonal_Evolution_of_Cape_Darnley_Bottom_Water_Revealed_by_Mooring_Measurements_pdf/15149649
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spelling ftfrontimediafig:oai:figshare.com:article/15149649 2023-05-15T13:36:09+02:00 Data_Sheet_1_Seasonal Evolution of Cape Darnley Bottom Water Revealed by Mooring Measurements.pdf Genta Mizuta Yasushi Fukamachi Daisuke Simizu Yoshimasa Matsumura Yujiro Kitade Daisuke Hirano Masakazu Fujii Yoshifumi Nogi Kay I. Ohshima 2021-08-11T16:42:18Z https://doi.org/10.3389/fmars.2021.657119.s001 https://figshare.com/articles/dataset/Data_Sheet_1_Seasonal_Evolution_of_Cape_Darnley_Bottom_Water_Revealed_by_Mooring_Measurements_pdf/15149649 unknown doi:10.3389/fmars.2021.657119.s001 https://figshare.com/articles/dataset/Data_Sheet_1_Seasonal_Evolution_of_Cape_Darnley_Bottom_Water_Revealed_by_Mooring_Measurements_pdf/15149649 CC BY 4.0 CC-BY Oceanography Marine Biology Marine Geoscience Biological Oceanography Chemical Oceanography Physical Oceanography Marine Engineering sea ice seasonal evolution mooring measurement Cape Darnley Bottom Water Antarctic Bottom Water Dataset 2021 ftfrontimediafig https://doi.org/10.3389/fmars.2021.657119.s001 2021-08-11T22:58:04Z This study examines the seasonal evolution of Cape Darnley Bottom Water (CDBW), using the results of mooring and hydrographic measurements in the slope region off Cape Darnley in 2008–2009 and 2013–2014. Newly formed CDBW began reaching the western and nearshore part of the slope region off Cape Darnley in April, spread to the offshore and eastern part in May, and reached the easternmost part in September. The potential temperature and salinity decreased and the neutral density increased when newly formed CDBW reached mooring sites. Potential temperature-salinity properties of CDBW changed over time and location. The salinity of the source water of CDBW estimated from potential temperature-salinity diagrams started to increase at a nearshore mooring in late April, which is about 2 months after the onset of sea-ice production, and continued to increase during the ice production season. It is most probable that the accumulation of brine in the Cape Darnley polynya produces the seasonal variation of potential temperature-salinity properties of CDBW. Two types of CDBW were identified. Cold and less saline CDBW and warm and saline CDBW were present in Wild and Daly Canyons, respectively. This indicates that the salinity of the source water of CDBW increased in the westward direction. CDBW exhibited short-term variability induced by baroclinic instability. Dataset Antarc* Antarctic Sea ice Frontiers: Figshare Antarctic Cape Darnley ENVELOPE(69.567,69.567,-67.738,-67.738) Daly ENVELOPE(63.761,63.761,-67.513,-67.513) Darnley ENVELOPE(69.717,69.717,-67.717,-67.717)
institution Open Polar
collection Frontiers: Figshare
op_collection_id ftfrontimediafig
language unknown
topic Oceanography
Marine Biology
Marine Geoscience
Biological Oceanography
Chemical Oceanography
Physical Oceanography
Marine Engineering
sea ice
seasonal evolution
mooring measurement
Cape Darnley Bottom Water
Antarctic Bottom Water
spellingShingle Oceanography
Marine Biology
Marine Geoscience
Biological Oceanography
Chemical Oceanography
Physical Oceanography
Marine Engineering
sea ice
seasonal evolution
mooring measurement
Cape Darnley Bottom Water
Antarctic Bottom Water
Genta Mizuta
Yasushi Fukamachi
Daisuke Simizu
Yoshimasa Matsumura
Yujiro Kitade
Daisuke Hirano
Masakazu Fujii
Yoshifumi Nogi
Kay I. Ohshima
Data_Sheet_1_Seasonal Evolution of Cape Darnley Bottom Water Revealed by Mooring Measurements.pdf
topic_facet Oceanography
Marine Biology
Marine Geoscience
Biological Oceanography
Chemical Oceanography
Physical Oceanography
Marine Engineering
sea ice
seasonal evolution
mooring measurement
Cape Darnley Bottom Water
Antarctic Bottom Water
description This study examines the seasonal evolution of Cape Darnley Bottom Water (CDBW), using the results of mooring and hydrographic measurements in the slope region off Cape Darnley in 2008–2009 and 2013–2014. Newly formed CDBW began reaching the western and nearshore part of the slope region off Cape Darnley in April, spread to the offshore and eastern part in May, and reached the easternmost part in September. The potential temperature and salinity decreased and the neutral density increased when newly formed CDBW reached mooring sites. Potential temperature-salinity properties of CDBW changed over time and location. The salinity of the source water of CDBW estimated from potential temperature-salinity diagrams started to increase at a nearshore mooring in late April, which is about 2 months after the onset of sea-ice production, and continued to increase during the ice production season. It is most probable that the accumulation of brine in the Cape Darnley polynya produces the seasonal variation of potential temperature-salinity properties of CDBW. Two types of CDBW were identified. Cold and less saline CDBW and warm and saline CDBW were present in Wild and Daly Canyons, respectively. This indicates that the salinity of the source water of CDBW increased in the westward direction. CDBW exhibited short-term variability induced by baroclinic instability.
format Dataset
author Genta Mizuta
Yasushi Fukamachi
Daisuke Simizu
Yoshimasa Matsumura
Yujiro Kitade
Daisuke Hirano
Masakazu Fujii
Yoshifumi Nogi
Kay I. Ohshima
author_facet Genta Mizuta
Yasushi Fukamachi
Daisuke Simizu
Yoshimasa Matsumura
Yujiro Kitade
Daisuke Hirano
Masakazu Fujii
Yoshifumi Nogi
Kay I. Ohshima
author_sort Genta Mizuta
title Data_Sheet_1_Seasonal Evolution of Cape Darnley Bottom Water Revealed by Mooring Measurements.pdf
title_short Data_Sheet_1_Seasonal Evolution of Cape Darnley Bottom Water Revealed by Mooring Measurements.pdf
title_full Data_Sheet_1_Seasonal Evolution of Cape Darnley Bottom Water Revealed by Mooring Measurements.pdf
title_fullStr Data_Sheet_1_Seasonal Evolution of Cape Darnley Bottom Water Revealed by Mooring Measurements.pdf
title_full_unstemmed Data_Sheet_1_Seasonal Evolution of Cape Darnley Bottom Water Revealed by Mooring Measurements.pdf
title_sort data_sheet_1_seasonal evolution of cape darnley bottom water revealed by mooring measurements.pdf
publishDate 2021
url https://doi.org/10.3389/fmars.2021.657119.s001
https://figshare.com/articles/dataset/Data_Sheet_1_Seasonal_Evolution_of_Cape_Darnley_Bottom_Water_Revealed_by_Mooring_Measurements_pdf/15149649
long_lat ENVELOPE(69.567,69.567,-67.738,-67.738)
ENVELOPE(63.761,63.761,-67.513,-67.513)
ENVELOPE(69.717,69.717,-67.717,-67.717)
geographic Antarctic
Cape Darnley
Daly
Darnley
geographic_facet Antarctic
Cape Darnley
Daly
Darnley
genre Antarc*
Antarctic
Sea ice
genre_facet Antarc*
Antarctic
Sea ice
op_relation doi:10.3389/fmars.2021.657119.s001
https://figshare.com/articles/dataset/Data_Sheet_1_Seasonal_Evolution_of_Cape_Darnley_Bottom_Water_Revealed_by_Mooring_Measurements_pdf/15149649
op_rights CC BY 4.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.3389/fmars.2021.657119.s001
_version_ 1766074863548628992