Water, heat and salt exchanges between the deep basins of the Baltic Sea

From numerical model simulations, fluxes of volume, heat and salt have been calculated for different hydrographical sections in areas which are important for the deep water exchange in the Baltic Sea. The calculated deep water flow in the Arkona basin is in accordance with independent estimations ob...

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Main Authors: Lehmann, Andreas, Hinrichsen, Hans-Harald
Format: Article in Journal/Newspaper
Language:English
Published: Finnish Zoological and Botanical Publ. Board 2002
Subjects:
Online Access:https://oceanrep.geomar.de/id/eprint/407/
https://oceanrep.geomar.de/id/eprint/407/1/ber7-405.pdf
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spelling ftoceanrep:oai:oceanrep.geomar.de:407 2024-09-15T18:00:11+00:00 Water, heat and salt exchanges between the deep basins of the Baltic Sea Lehmann, Andreas Hinrichsen, Hans-Harald 2002-12-23 text https://oceanrep.geomar.de/id/eprint/407/ https://oceanrep.geomar.de/id/eprint/407/1/ber7-405.pdf en eng Finnish Zoological and Botanical Publ. Board https://oceanrep.geomar.de/id/eprint/407/1/ber7-405.pdf Lehmann, A. and Hinrichsen, H. H. (2002) Water, heat and salt exchanges between the deep basins of the Baltic Sea. Open Access Boreal Environment Research, 7 . pp. 405-415. cc_by_3.0 info:eu-repo/semantics/openAccess Article PeerReviewed 2002 ftoceanrep 2024-09-04T05:04:40Z From numerical model simulations, fluxes of volume, heat and salt have been calculated for different hydrographical sections in areas which are important for the deep water exchange in the Baltic Sea. The calculated deep water flow in the Arkona basin is in accordance with independent estimations obtained from profile data. Model results reveal strong seasonal and inter-annual variability in the calculated fluxes. The variability is governed by the prevailing atmospheric conditions. It is found that the strength of the upper layer low saline flow in the Arkona Basin which on average is directed to the west, opposite to the mean wind direction, is compensated by a high saline flow in deeper layers. The upper layer flow is a combination of a flow forced by the fresh water surplus directed to the west, and a wind-driven part. In dependence on the prevailing wind conditions the resulting flow is either increased or decreased. Furthermore, increasing upper layer flow results in an increased lower layer flow in opposite direction. The annual mean flow is weakly correlated with the annual mean runoff to the Baltic Sea. In accordance with the mean circulation, the flow through the Bornholm Channel is on average directed to the east, and south of Bornholm to the west indicating an import of heat and salt to the Bornholm Basin through the Bornholm Channel and an export south of Bornholm. Flux characteristics change further downstream in the Stolpe Channel. The volume flow in the upper layer shows a strong seasonal signal. During autumn to spring the flow is mainly directed to the east, in summer, the flow direction is reversed. Flow in westerly directions is related to increased lower layer flow in easterly directions. On average, the net flow through the Stolpe channel is directed to the east which is in accordance with the mean circulation. Calculated fluxes show high intra- and inter-annual variability with no obvious trend during the simulation period. The variability of the deep water stratification in the deep ... Article in Journal/Newspaper Boreal Environment Research OceanRep (GEOMAR Helmholtz Centre für Ocean Research Kiel)
institution Open Polar
collection OceanRep (GEOMAR Helmholtz Centre für Ocean Research Kiel)
op_collection_id ftoceanrep
language English
description From numerical model simulations, fluxes of volume, heat and salt have been calculated for different hydrographical sections in areas which are important for the deep water exchange in the Baltic Sea. The calculated deep water flow in the Arkona basin is in accordance with independent estimations obtained from profile data. Model results reveal strong seasonal and inter-annual variability in the calculated fluxes. The variability is governed by the prevailing atmospheric conditions. It is found that the strength of the upper layer low saline flow in the Arkona Basin which on average is directed to the west, opposite to the mean wind direction, is compensated by a high saline flow in deeper layers. The upper layer flow is a combination of a flow forced by the fresh water surplus directed to the west, and a wind-driven part. In dependence on the prevailing wind conditions the resulting flow is either increased or decreased. Furthermore, increasing upper layer flow results in an increased lower layer flow in opposite direction. The annual mean flow is weakly correlated with the annual mean runoff to the Baltic Sea. In accordance with the mean circulation, the flow through the Bornholm Channel is on average directed to the east, and south of Bornholm to the west indicating an import of heat and salt to the Bornholm Basin through the Bornholm Channel and an export south of Bornholm. Flux characteristics change further downstream in the Stolpe Channel. The volume flow in the upper layer shows a strong seasonal signal. During autumn to spring the flow is mainly directed to the east, in summer, the flow direction is reversed. Flow in westerly directions is related to increased lower layer flow in easterly directions. On average, the net flow through the Stolpe channel is directed to the east which is in accordance with the mean circulation. Calculated fluxes show high intra- and inter-annual variability with no obvious trend during the simulation period. The variability of the deep water stratification in the deep ...
format Article in Journal/Newspaper
author Lehmann, Andreas
Hinrichsen, Hans-Harald
spellingShingle Lehmann, Andreas
Hinrichsen, Hans-Harald
Water, heat and salt exchanges between the deep basins of the Baltic Sea
author_facet Lehmann, Andreas
Hinrichsen, Hans-Harald
author_sort Lehmann, Andreas
title Water, heat and salt exchanges between the deep basins of the Baltic Sea
title_short Water, heat and salt exchanges between the deep basins of the Baltic Sea
title_full Water, heat and salt exchanges between the deep basins of the Baltic Sea
title_fullStr Water, heat and salt exchanges between the deep basins of the Baltic Sea
title_full_unstemmed Water, heat and salt exchanges between the deep basins of the Baltic Sea
title_sort water, heat and salt exchanges between the deep basins of the baltic sea
publisher Finnish Zoological and Botanical Publ. Board
publishDate 2002
url https://oceanrep.geomar.de/id/eprint/407/
https://oceanrep.geomar.de/id/eprint/407/1/ber7-405.pdf
genre Boreal Environment Research
genre_facet Boreal Environment Research
op_relation https://oceanrep.geomar.de/id/eprint/407/1/ber7-405.pdf
Lehmann, A. and Hinrichsen, H. H. (2002) Water, heat and salt exchanges between the deep basins of the Baltic Sea. Open Access Boreal Environment Research, 7 . pp. 405-415.
op_rights cc_by_3.0
info:eu-repo/semantics/openAccess
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