Seasonal renewal time variability in the Curonian Lagoon caused by atmospheric and hydrographical forcing
The aim of this study was to investigate the variability of the water exchanges in the Curonian Lagoon based on the hydraulic regime and the atmospheric forcings. A finite element hydrodynamic model has been applied to the Curonian Lagoon to simulate the circulation patterns for 10 years. With the h...
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doaj-39f561223c874b328c8d08ed634f8eb32020-11-25T02:14:02ZengCopernicus PublicationsOcean Science1812-07841812-07922016-03-0112239140210.5194/os-12-391-2016Seasonal renewal time variability in the Curonian Lagoon caused by atmospheric and hydrographical forcingG. Umgiesser0P. Zemlys1A. Erturk2A. Razinkova-Baziukas3J. Mėžinė4C. Ferrarin5Institute of Marine Sciences – National Research Council (ISMAR-CNR), Castello 2737/f, 30122 Venice, ItalyOpen Access Center for Marine Research, Klaipėda University, H. Manto str. 84, 92294 Klaipėda, LithuaniaIstanbul University, Faculty of Fisheries, Department of Freshwater Biology, Ordu Cad. No: 200 Laleli/İstanbul, 34130 Istanbul, TurkeyOpen Access Center for Marine Research, Klaipėda University, H. Manto str. 84, 92294 Klaipėda, LithuaniaOpen Access Center for Marine Research, Klaipėda University, H. Manto str. 84, 92294 Klaipėda, LithuaniaInstitute of Marine Sciences – National Research Council (ISMAR-CNR), Castello 2737/f, 30122 Venice, ItalyThe aim of this study was to investigate the variability of the water exchanges in the Curonian Lagoon based on the hydraulic regime and the atmospheric forcings. A finite element hydrodynamic model has been applied to the Curonian Lagoon to simulate the circulation patterns for 10 years. With the help of a transport–diffusion model, the salinity distribution and the renewal times of the Curonian Lagoon have been investigated when forced by river runoff, wind, and Baltic Sea level fluctuations. The hydrodynamic model has been validated using in situ salinity measurements. <br><br> Model results show that the variability depends mainly on seasonal changes in hydrographic forcing and on the dominant wind regimes that prevail over the Curonian Lagoon. Exchanges between the southern and the northern part of the lagoon mostly depend on the wind forcing and are much less influenced by the river discharge. <br><br> However, when looking at the water renewal time, the most important factor is the river discharge into the lagoon. Other physical forcings only marginally determine the renewal time, and not even ice cover is able to influence it. Even if ice cover strongly inhibits the exchanges between the southern and northern lagoon, it is basically not able to change the absolute value of the renewal times.http://www.ocean-sci.net/12/391/2016/os-12-391-2016.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
G. Umgiesser P. Zemlys A. Erturk A. Razinkova-Baziukas J. Mėžinė C. Ferrarin |
spellingShingle |
G. Umgiesser P. Zemlys A. Erturk A. Razinkova-Baziukas J. Mėžinė C. Ferrarin Seasonal renewal time variability in the Curonian Lagoon caused by atmospheric and hydrographical forcing Ocean Science |
author_facet |
G. Umgiesser P. Zemlys A. Erturk A. Razinkova-Baziukas J. Mėžinė C. Ferrarin |
author_sort |
G. Umgiesser |
title |
Seasonal renewal time variability in the Curonian Lagoon caused by atmospheric and hydrographical forcing |
title_short |
Seasonal renewal time variability in the Curonian Lagoon caused by atmospheric and hydrographical forcing |
title_full |
Seasonal renewal time variability in the Curonian Lagoon caused by atmospheric and hydrographical forcing |
title_fullStr |
Seasonal renewal time variability in the Curonian Lagoon caused by atmospheric and hydrographical forcing |
title_full_unstemmed |
Seasonal renewal time variability in the Curonian Lagoon caused by atmospheric and hydrographical forcing |
title_sort |
seasonal renewal time variability in the curonian lagoon caused by atmospheric and hydrographical forcing |
publisher |
Copernicus Publications |
series |
Ocean Science |
issn |
1812-0784 1812-0792 |
publishDate |
2016-03-01 |
description |
The aim of this study was to investigate the variability of the water
exchanges in the Curonian Lagoon based on the hydraulic regime and the
atmospheric forcings. A finite element hydrodynamic model has been applied
to the Curonian Lagoon to simulate the circulation patterns for 10 years.
With the help of a transport–diffusion model, the salinity distribution and
the renewal times of the Curonian Lagoon have been investigated when forced
by river runoff, wind, and Baltic Sea level fluctuations. The hydrodynamic
model has been validated using in situ salinity measurements.
<br><br>
Model results show that the variability depends mainly on seasonal changes
in hydrographic forcing and on the dominant wind regimes that prevail over
the Curonian Lagoon. Exchanges between the southern and the northern part of
the lagoon mostly depend on the wind forcing and are much less influenced by
the river discharge.
<br><br>
However, when looking at the water renewal time, the most important factor
is the river discharge into the lagoon. Other physical forcings only
marginally determine the renewal time, and not even ice cover is able to
influence it. Even if ice cover strongly inhibits the exchanges between the
southern and northern lagoon, it is basically not able to change the
absolute value of the renewal times. |
url |
http://www.ocean-sci.net/12/391/2016/os-12-391-2016.pdf |
work_keys_str_mv |
AT gumgiesser seasonalrenewaltimevariabilityinthecuronianlagooncausedbyatmosphericandhydrographicalforcing AT pzemlys seasonalrenewaltimevariabilityinthecuronianlagooncausedbyatmosphericandhydrographicalforcing AT aerturk seasonalrenewaltimevariabilityinthecuronianlagooncausedbyatmosphericandhydrographicalforcing AT arazinkovabaziukas seasonalrenewaltimevariabilityinthecuronianlagooncausedbyatmosphericandhydrographicalforcing AT jmezine seasonalrenewaltimevariabilityinthecuronianlagooncausedbyatmosphericandhydrographicalforcing AT cferrarin seasonalrenewaltimevariabilityinthecuronianlagooncausedbyatmosphericandhydrographicalforcing |
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1724902463763382272 |