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Monitoring and long-term assessment of the Mediterranean Sea physical state through ocean reanalyses62
Author(s)
Type
Extended abstract
Language
English
Obiettivo Specifico
4A. Oceanografia e clima
Editor(s)
Status
Published
Issued date
June 26, 2019
Conference Location
Rome
Publisher
Istituto Nazionale di Geofisica e Vulcanologia
Alternative Location
Keywords
Abstract
The Mediterranean Sea physical reanalysis [MEDREA, Simoncelli et al., 2014, Simoncelli et al., 2016] data set has been produced in the framework of MyOcean Project and distributed thought Copernicus Marine Environment Monitoring Service (CMEMS) catalogue (http://marine.copernicus.eu) since 2014 and yearly extended. It covers the time period 19872018 at 1/16° of spatial resolution forced by ERAInterim atmospheric reanalysis [Dee et al., 2011] and provides daily and monthly fields of temperature, salinity, sea surface height and currents. It assimilates along track sea level anomaly and temperature and salinity profiles. This data set is one of the most used by CMEMS users for many applications and studies among which the study of: the connectivity of Marine Protected Areas [Rossi et al., 2014]; the double diffusion processes [Meccia et al., 2016]; the cause of mass mortality that hit gorgonian forests at Montecristo Island [Turicchia et al., 2018]; the Mediterranean overturning circulation [Pinardi e al., 2019].
References
1699–1721, https://doi.org/10.1175/JPOD180254.1.
Rossi V., SerGiacomi E., López C. and HernándezGarcía E., (2014). Hydrodynamic provinces and oceanic connectivity from a transport network help designing marine reserves. Geophys. Res. Lett., 41, 28832891. doi: 10.1002/2014GL059540.
Schroeder K., Chiggiato J., Josey S.A., Borghini M., Aracri S., Sparnocchia S., (2017). Rapid response to climate change in a marginal sea. Scientific Reports. https://doi.org/10.1038/s41598017044555.
Simoncelli S., Fratianni C., Pinardi N., Grandi A., Drudi M., Oddo P. & Dobricic S., (2014). Mediterranean Sea physical reanalysis (MEDREA 19872015) [Data set]. Copernicus Monitoring Environment Marine Service (CMEMS).
Simoncelli S., Masina S., Axell L., Liu Y., Salon S., Cossarini G., Bertino L., Xie J., Samuelsen A., Levier B., et al., (2016). MyOcean regional reanalyses: overview of reanalyses systems and main results. Mercator Ocean J. 54. Special Issue on Main Outcomes of the MyOcean2 and MyOcean Followon projects. https://www.mercatorocean.fr/en/sciencepublications/mercatoroceanjournal/newsletter54focusingonthemainoutcomesofthemyocean2andfollononprojects/.
Storto A., Masina S., Simoncelli S. et al., (2019). The added value of the multisystem spread information for ocean heat content and steric sea level investigations in the CMEMS GREP ensemble reanalysis product. Clim. Dyn. 53: 287. https://doi.org/10.1007/s0038201845855.
Turicchia E., Abbiati M., Sweet M., Ponti M., (2018). Mass mortality hits gorgonian forests at Montecristo Island. Dis Aquat Org 131:7985. https://doi.org/10.3354/dao03284.
von Schuckmann K., Gaillard F. and Le Traon P.Y., (2009). Global hydrographic variability patterns during 20032008, Journal of Geophysical Research, 114, C09007, doi: 10.1029/2008JC005237.
von Schuckmann et al., (2016). Ocean heat content. In: The Copernicus Marine Environment Monitoring Service Ocean State Report, issue 1, Journal of Operational Oceanography, Volume 9, 2016 Issue sup2: The Copernicus Marine Environment Monitoring Service Ocean, http://dx.doi.org/10.1080/1755876X.2016.1273446.
von Schuckmann et al., (2018). Ocean heat content. In: The Copernicus Marine Environment Monitoring Service Ocean State Report, issue 2, Journal of Operational Oceanography, 11:sup1, s1s142, doi: 10.1080/1755876X.2018.1489208.
Rossi V., SerGiacomi E., López C. and HernándezGarcía E., (2014). Hydrodynamic provinces and oceanic connectivity from a transport network help designing marine reserves. Geophys. Res. Lett., 41, 28832891. doi: 10.1002/2014GL059540.
Schroeder K., Chiggiato J., Josey S.A., Borghini M., Aracri S., Sparnocchia S., (2017). Rapid response to climate change in a marginal sea. Scientific Reports. https://doi.org/10.1038/s41598017044555.
Simoncelli S., Fratianni C., Pinardi N., Grandi A., Drudi M., Oddo P. & Dobricic S., (2014). Mediterranean Sea physical reanalysis (MEDREA 19872015) [Data set]. Copernicus Monitoring Environment Marine Service (CMEMS).
Simoncelli S., Masina S., Axell L., Liu Y., Salon S., Cossarini G., Bertino L., Xie J., Samuelsen A., Levier B., et al., (2016). MyOcean regional reanalyses: overview of reanalyses systems and main results. Mercator Ocean J. 54. Special Issue on Main Outcomes of the MyOcean2 and MyOcean Followon projects. https://www.mercatorocean.fr/en/sciencepublications/mercatoroceanjournal/newsletter54focusingonthemainoutcomesofthemyocean2andfollononprojects/.
Storto A., Masina S., Simoncelli S. et al., (2019). The added value of the multisystem spread information for ocean heat content and steric sea level investigations in the CMEMS GREP ensemble reanalysis product. Clim. Dyn. 53: 287. https://doi.org/10.1007/s0038201845855.
Turicchia E., Abbiati M., Sweet M., Ponti M., (2018). Mass mortality hits gorgonian forests at Montecristo Island. Dis Aquat Org 131:7985. https://doi.org/10.3354/dao03284.
von Schuckmann K., Gaillard F. and Le Traon P.Y., (2009). Global hydrographic variability patterns during 20032008, Journal of Geophysical Research, 114, C09007, doi: 10.1029/2008JC005237.
von Schuckmann et al., (2016). Ocean heat content. In: The Copernicus Marine Environment Monitoring Service Ocean State Report, issue 1, Journal of Operational Oceanography, Volume 9, 2016 Issue sup2: The Copernicus Marine Environment Monitoring Service Ocean, http://dx.doi.org/10.1080/1755876X.2016.1273446.
von Schuckmann et al., (2018). Ocean heat content. In: The Copernicus Marine Environment Monitoring Service Ocean State Report, issue 2, Journal of Operational Oceanography, 11:sup1, s1s142, doi: 10.1080/1755876X.2018.1489208.
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