2018
DOI: 10.5194/os-14-1223-2018
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An integrated open-coastal biogeochemistry, ecosystem and biodiversity observatory of the eastern Mediterranean – the Cretan Sea component of the POSEIDON system

Abstract: Abstract. There is a general scarcity of oceanic observations that concurrently examine air–sea interactions, coastal–open-ocean processes and physical–biogeochemical processes, in appropriate spatiotemporal scales and under continuous, long-term data acquisition schemes. In the Mediterranean Sea, the resulting knowledge gaps and observing challenges increase due to its oligotrophic character, especially in the eastern part of the basin. The oligotrophic open Cretan Sea's biogeochemistry is considered to be re… Show more

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Cited by 21 publications
(13 citation statements)
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References 66 publications
(78 reference statements)
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“…The Mediterranean Sea Monitoring and Forecasting Centre (Med-MFC; Tonani et al, 2013) is one of the regional systems and is composed of the physical system "Med-PHY" (Tonani et al, 2008;Oddo et al, 2009), which drives the biogeochemical system "Med-BIO" (Lazzari et al, 2010(Lazzari et al, , 2012 and the wave system "Med-WAV" (Ravdas et al, 2018). In recent years, following the CMEMS requirements, the Med-MFC has been consistently upgraded in the physical (Oddo et al, 2014;Clementi et al, 2017;Pistoia et al, 2018), wave , and biogeochemical components (Cossarini et al, 2015;Lazzari et al, 2016), including also data assimilation (Teruzzi et al, 2014;Storto et al, 2015).…”
Section: Introductionmentioning
confidence: 99%
“…The Mediterranean Sea Monitoring and Forecasting Centre (Med-MFC; Tonani et al, 2013) is one of the regional systems and is composed of the physical system "Med-PHY" (Tonani et al, 2008;Oddo et al, 2009), which drives the biogeochemical system "Med-BIO" (Lazzari et al, 2010(Lazzari et al, , 2012 and the wave system "Med-WAV" (Ravdas et al, 2018). In recent years, following the CMEMS requirements, the Med-MFC has been consistently upgraded in the physical (Oddo et al, 2014;Clementi et al, 2017;Pistoia et al, 2018), wave , and biogeochemical components (Cossarini et al, 2015;Lazzari et al, 2016), including also data assimilation (Teruzzi et al, 2014;Storto et al, 2015).…”
Section: Introductionmentioning
confidence: 99%
“…From this buoy, a vast array of oceanographic and biogeochemical data has been, and continues to be, gathered for the area. Augmenting the data from the buoy itself are monthly sampling site visits, FerryBox data from the Athens-Crete ferry that passes to the west of the buoy, multiple deployment Argo profiler data of the local area and data from an AUV/glider that is autonomously and continuously operating on transects past the buoy [35].…”
Section: Location and General Characteristicsmentioning
confidence: 99%
“…The following sections further detail the site's characteristics that support its prime suitability for Copernicus OC-SVC. When combined with logistical considerations, the best site in the Cretan Sea is in the vicinity of the HCMR operational physical and biogeochemical monitoring buoy (E1-M3A) [35]. This location, referred to as MSEA similarly to [24], is at 35°44' N, 25°20' E approximately 26 nmi (48 km) north of the HCMR headquarters in Crete.…”
Section: Location and General Characteristicsmentioning
confidence: 99%
“…Initiated in 2010, the JERICO-FP7 project was the first Europe-wide effort toward the harmonization and coordination (Petihakis et al, 2015) of major coastal observing platforms including FerryBoxes, gliders, and fixed platforms (Ostrowski et al, 2016;Baschek et al, 2017;Laakso et al, 2018;Petihakis et al, 2018). (Table 1: exemple of regional infrastructure) Key physical and biogeochemical (e.g., oxygen and pCO 2 ) parameters were considered for harmonization, while emerging technologies such as Sediment Profiler Imagery and time-laps cameras were assessed.…”
Section: Birth Of European Coastal Research Communitymentioning
confidence: 99%