Articles | Volume 13, issue 4
https://doi.org/10.5194/bg-13-1009-2016
https://doi.org/10.5194/bg-13-1009-2016
Research article
 | 
23 Feb 2016
Research article |  | 23 Feb 2016

Changing seasonality of the Baltic Sea

Mati Kahru, Ragnar Elmgren, and Oleg P. Savchuk

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Cited articles

Atlas, R., Ardizzone, J., and Homan, R. N.: Application of satellite surface wind data to ocean wind analysis, Proc. SPIE, 7087B, https://doi.org/10.1117/12.795371, 2008.
Attila, J., Koponen, S., Kallio, K., Lindfors, A., Kaitala, S., and Ylöstalo, P.: MERIS Case II water processor comparison on coastal sites of the northern Baltic Sea, Remote Sens. Environ., 128, 138–149, 2013.
Belkin, I. M.: Rapid warming of large marine ecosystems, Prog. Oceanogr., 81, 207–213, 2009.
Beyer, H. G., Costanzo, C., and Heinemann, D.: Modifications of the Heliosat procedure for irradiance estimates from satellite images, Sol. Energy, 56, 207–212, 1996.
Cano, D., Monget, J. M., Albuisson, M., Guillard, H., Regas, N., and Wald, L.: A method for the determination of the global solar-radiation from meteorological satellite data, Sol. Energy, 37, 25 31–39, 1986.
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Short summary
Using satellite-derived data sets we have found drastic changes in the timing of the annual cycle in physical and ecological variables of the Baltic Sea over the last 30 years. The summer season starts earlier and extends longer. The period with sea-surface temperature of at least 17 ˚C has doubled; the period with high water turbidity has quadrupled. While both the phytoplankton spring and summer blooms have become earlier, the annual maximum has switched to the summer cyanobacteria bloom.
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