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Georgopoulos, Dimitrios; Zervakis, Vassilis (2008): Hydrology dataset based on 111 CTD stations in the North Aegean Sea during June 1998 from the project INTERREGAEGEAN [dataset publication series]. Centre de Formation et de Recherche sur l`Environnement Marin, Universite de Perpignan, PANGAEA, https://doi.org/10.1594/PANGAEA.683833

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Abstract:
The combination of two research projects offered us the opportunity to perform a comprehensive study of the seasonal evolution of the hydrological structure and the circulation of the North Aegean Sea, at the northern extremes of the eastern Mediterranean. The combination of brackish water inflow from the Dardanelles and the sea-bottom relief dictate the significant differences between the North and South Aegean water columns. The relatively warm and highly saline South Aegean waters enter the North Aegean through the dominant cyclonic circulation of the basin. In the North Aegean, three layers of distinct water masses of very different properties are observed: The 20-50 m thick surface layer is occupied mainly by Black Sea Water, modified on its way through the Bosphorus, the Sea of Marmara and the Dardanelles. Below the surface layer there is warm and highly saline water originating in the South Aegean and the Levantine, extending down to 350-400 m depth. Below this layer, the deeper-than-400 m basins of the North Aegean contain locally formed, very dense water with different ı/S characteristics at each subbasin. The circulation is characterised by a series of permanent, semi-permanent and transient mesoscale features, overlaid on the general slow cyclonic circulation of the Aegean. The mesoscale activity, while not necessarily important in enhancing isopycnal mixing in the region, in combination with the very high stratification of the upper layers, however, increases the residence time of the water of the upper layers in the general area of the North Aegean. As a result, water having out-flowed from the Black Sea in the winter, forms a separate distinct layer in the region in spring (lying between “younger” BSW and the Levantine origin water), and is still traceable in the water column in late summer.
Related to:
Karageorgis, Aristomenis P; Gardner, Wilford; Georgopoulos, Dimitrios; Mishonov, Alexey V; Krasakopoulou, Evangelia; Anagnostou, Christos L (2008): Particle dynamics in the Eastern Mediterranean Sea: A synthesis based on light transmission, PMC, and POC archives (1991–2001). Deep Sea Research Part I: Oceanographic Research Papers, 55(2), 177-202, https://doi.org/10.1016/j.dsr.2007.11.002
Krasakopoulou, Evangelia; Zervakis, Vassilis; Souvermezoglou, Ekaterini; Georgopoulos, Dimitrios (2002): North-eastern Aegean sea: an effort to estimate steady-state N & P budgets during September 1998. Mediterranean Marine Science, 3(1), 43, https://doi.org/10.12681/mms.257
Pavlidou, Alexandra; Georgopoulos, Dimitrios (2001): Dissolved Oxygen and Nutrients in coastal waters impacted by the Strymon River plume, North Aegean Sea, Greece. Global Nest, 3(2), 71-84, https://doi.org/10.30955/gnj.000202
Pavlidou, Alexandra; Hatzianestis, I; Sklivagou, E; Papadopoulos, V; Zervakis, Vassilis (2002): Hydrology and pollution assessment in a coastal estuarine system. The case of the Strymonikos Gulf (North Aegean Sea). Mediterranean Marine Science, 3(1), 65, https://doi.org/10.12681/mms.259
Pavlidou, Alexandra; Papadopoulos, V; Zervakis, Vassilis (2001): Hydrology and nutrient - dissolved oxygen distributions in coastal waters affected by the Nestos River plume, north Aegean Sea, Greece. Fresenius Environmental Bulletin, 10(11), 823-831
Zervakis, Vassilis; Georgopoulos, Dimitrios (2002): Hydrology and circulation in the North Aegean (eastern Mediterranean) throughout 1997 and 1998. Mediterranean Marine Science, 3/1, 5-19, https://doi.org/10.12681/mms.254
Zervakis, Vassilis; Krasakopoulou, Evangelia; Georgopoulos, Dimitrios; Souvermezoglou, Ekaterini (2003): Vertical diffusion and oxygen consumption during stagnation periods in the deep North Aegean. Deep Sea Research Part I: Oceanographic Research Papers, 50(1), 53-71, https://doi.org/10.1016/S0967-0637(02)00144-9
Project(s):
Invest. of new marine biol. resources in deep waters of Ionian and Aegean Seas (INTERREG)
Funding:
Sixth Framework Programme (FP6), grant/award no. 36949: Southern European Seas: Assessing and Modelling Ecosystem Changes
Coverage:
Median Latitude: 40.211214 * Median Longitude: 24.783954 * South-bound Latitude: 39.050000 * West-bound Longitude: 23.730000 * North-bound Latitude: 40.830000 * East-bound Longitude: 25.990000
Date/Time Start: 1998-06-15T17:00:00 * Date/Time End: 1998-06-23T07:10:00
Event(s):
JUNE-1998-EV01 * Latitude: 40.750000 * Longitude: 25.910000 * Date/Time: 1998-06-19T10:20:00 * Campaign: INTERREG-JUNE-1998 * Basis: Aegaeo * Method/Device: CTD/Rosette (CTD-RO)
JUNE-1998-EV02 * Latitude: 40.760000 * Longitude: 25.990000 * Date/Time: 1998-06-19T09:40:00 * Campaign: INTERREG-JUNE-1998 * Basis: Aegaeo * Method/Device: CTD/Rosette (CTD-RO)
JUNE-1998-EV02A * Latitude: 40.760000 * Longitude: 25.990000 * Date/Time: 1998-06-19T09:45:00 * Campaign: INTERREG-JUNE-1998 * Basis: Aegaeo * Method/Device: CTD/Rosette (CTD-RO)
Size:
117 datasets

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Datasets listed in this publication series

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  1. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-R11. https://doi.org/10.1594/PANGAEA.683815
  2. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-R12. https://doi.org/10.1594/PANGAEA.683816
  3. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-R13. https://doi.org/10.1594/PANGAEA.683817
  4. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-R14. https://doi.org/10.1594/PANGAEA.683818
  5. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-R15. https://doi.org/10.1594/PANGAEA.683819
  6. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-R16. https://doi.org/10.1594/PANGAEA.683820
  7. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-R19. https://doi.org/10.1594/PANGAEA.683821
  8. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-R20. https://doi.org/10.1594/PANGAEA.683822
  9. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-S01. https://doi.org/10.1594/PANGAEA.683823
  10. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-S03. https://doi.org/10.1594/PANGAEA.683824
  11. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-S04. https://doi.org/10.1594/PANGAEA.683825
  12. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-S06. https://doi.org/10.1594/PANGAEA.683826
  13. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-S07. https://doi.org/10.1594/PANGAEA.683827
  14. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-S08. https://doi.org/10.1594/PANGAEA.683828
  15. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-S10. https://doi.org/10.1594/PANGAEA.683829
  16. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-S11. https://doi.org/10.1594/PANGAEA.683830
  17. Georgopoulos, D; Zervakis, V (2008): Physical oceanography at CTD station JUNE-1998-S12. https://doi.org/10.1594/PANGAEA.683831

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