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Beşiktepe, Şükrü T.
Sayın, Erdem
Beşiktepe, Şükrü T.
author Sayın, Erdem
Beşiktepe, Şükrü T.
spellingShingle Sayın, Erdem
Beşiktepe, Şükrü T.
Journal of Geophysical Research: Oceans
Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
Paleontology
Space and Planetary Science
Earth and Planetary Sciences (miscellaneous)
Atmospheric Science
Earth-Surface Processes
Geochemistry and Petrology
Soil Science
Water Science and Technology
Ecology
Aquatic Science
Forestry
Oceanography
Geophysics
author_sort sayın, erdem
spelling Sayın, Erdem Beşiktepe, Şükrü T. 0148-0227 American Geophysical Union (AGU) Paleontology Space and Planetary Science Earth and Planetary Sciences (miscellaneous) Atmospheric Science Earth-Surface Processes Geochemistry and Petrology Soil Science Water Science and Technology Ecology Aquatic Science Forestry Oceanography Geophysics http://dx.doi.org/10.1029/2009jc005694 <jats:p>We present time series of temperature and salinity of the Aegean Sea using the data sets for the period from 1991 to 1996 from 15 oceanographic cruises to depict the temporal variability of the water masses of the Aegean Sea. This period covers an interesting large‐scale change in the thermohaline circulation in the Eastern Mediterranean and the Aegean Sea. This change is known as the Eastern Mediterranean transient (EMT) and was first described during early 1990s. Our analysis reveals that very dense water formation in the Central Aegean Sea is partially due to the anomalous decrease in winter atmospheric temperature although this alone cannot completely account for the formation of the dense water. A synchronous increase in surface salinity accompanied by low temperature values in the winter months is also necessary for the EMT event to occur.</jats:p> Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea Journal of Geophysical Research: Oceans
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title Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_unstemmed Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_full Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_fullStr Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_full_unstemmed Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_short Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_sort temporal evolution of the water mass properties during the eastern mediterranean transient (emt) in the aegean sea
topic Paleontology
Space and Planetary Science
Earth and Planetary Sciences (miscellaneous)
Atmospheric Science
Earth-Surface Processes
Geochemistry and Petrology
Soil Science
Water Science and Technology
Ecology
Aquatic Science
Forestry
Oceanography
Geophysics
url http://dx.doi.org/10.1029/2009jc005694
publishDate 2010
physical
description <jats:p>We present time series of temperature and salinity of the Aegean Sea using the data sets for the period from 1991 to 1996 from 15 oceanographic cruises to depict the temporal variability of the water masses of the Aegean Sea. This period covers an interesting large‐scale change in the thermohaline circulation in the Eastern Mediterranean and the Aegean Sea. This change is known as the Eastern Mediterranean transient (EMT) and was first described during early 1990s. Our analysis reveals that very dense water formation in the Central Aegean Sea is partially due to the anomalous decrease in winter atmospheric temperature although this alone cannot completely account for the formation of the dense water. A synchronous increase in surface salinity accompanied by low temperature values in the winter months is also necessary for the EMT event to occur.</jats:p>
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author Sayın, Erdem, Beşiktepe, Şükrü T.
author_facet Sayın, Erdem, Beşiktepe, Şükrü T., Sayın, Erdem, Beşiktepe, Şükrü T.
author_sort sayın, erdem
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description <jats:p>We present time series of temperature and salinity of the Aegean Sea using the data sets for the period from 1991 to 1996 from 15 oceanographic cruises to depict the temporal variability of the water masses of the Aegean Sea. This period covers an interesting large‐scale change in the thermohaline circulation in the Eastern Mediterranean and the Aegean Sea. This change is known as the Eastern Mediterranean transient (EMT) and was first described during early 1990s. Our analysis reveals that very dense water formation in the Central Aegean Sea is partially due to the anomalous decrease in winter atmospheric temperature although this alone cannot completely account for the formation of the dense water. A synchronous increase in surface salinity accompanied by low temperature values in the winter months is also necessary for the EMT event to occur.</jats:p>
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imprint American Geophysical Union (AGU), 2010
imprint_str_mv American Geophysical Union (AGU), 2010
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spelling Sayın, Erdem Beşiktepe, Şükrü T. 0148-0227 American Geophysical Union (AGU) Paleontology Space and Planetary Science Earth and Planetary Sciences (miscellaneous) Atmospheric Science Earth-Surface Processes Geochemistry and Petrology Soil Science Water Science and Technology Ecology Aquatic Science Forestry Oceanography Geophysics http://dx.doi.org/10.1029/2009jc005694 <jats:p>We present time series of temperature and salinity of the Aegean Sea using the data sets for the period from 1991 to 1996 from 15 oceanographic cruises to depict the temporal variability of the water masses of the Aegean Sea. This period covers an interesting large‐scale change in the thermohaline circulation in the Eastern Mediterranean and the Aegean Sea. This change is known as the Eastern Mediterranean transient (EMT) and was first described during early 1990s. Our analysis reveals that very dense water formation in the Central Aegean Sea is partially due to the anomalous decrease in winter atmospheric temperature although this alone cannot completely account for the formation of the dense water. A synchronous increase in surface salinity accompanied by low temperature values in the winter months is also necessary for the EMT event to occur.</jats:p> Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea Journal of Geophysical Research: Oceans
spellingShingle Sayın, Erdem, Beşiktepe, Şükrü T., Journal of Geophysical Research: Oceans, Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea, Paleontology, Space and Planetary Science, Earth and Planetary Sciences (miscellaneous), Atmospheric Science, Earth-Surface Processes, Geochemistry and Petrology, Soil Science, Water Science and Technology, Ecology, Aquatic Science, Forestry, Oceanography, Geophysics
title Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_full Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_fullStr Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_full_unstemmed Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_short Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
title_sort temporal evolution of the water mass properties during the eastern mediterranean transient (emt) in the aegean sea
title_unstemmed Temporal evolution of the water mass properties during the Eastern Mediterranean transient (EMT) in the Aegean Sea
topic Paleontology, Space and Planetary Science, Earth and Planetary Sciences (miscellaneous), Atmospheric Science, Earth-Surface Processes, Geochemistry and Petrology, Soil Science, Water Science and Technology, Ecology, Aquatic Science, Forestry, Oceanography, Geophysics
url http://dx.doi.org/10.1029/2009jc005694