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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

机译:地中海东部的综合性沿海生物地球化学,生态系统和生物多样性观测站-POSEIDON系统的克里特海部分

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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 representative of a greater Mediterranean area up to 10 sup6/sup km sup2/sup , and understanding its features may be useful on even larger oceanic scales, since the Mediterranean Sea has been considered a miniature model of the global ocean. The spatiotemporal coverage of biogeochemical (BGC) observations in the Cretan Sea has progressively increased over the last decades, especially since the creation of the POSEIDON observing system, which has adopted a multiplatform, multivariable approach, supporting BGC data acquisition. The current POSEIDON system's status includes open and coastal sea fixed platforms, a Ferrybox?(FB) system and Bio-Argo autonomous floats that remotely deliver fluorescence as a proxy of chlorophyll- a (Chl- a ), Osub2/sub , pH and p COsub2/sub data, as well as BGC-related physical variables. Since?2010, the list has been further expanded to other BGC (nutrients, vertical particulate matter fluxes), ecosystem and biodiversity (from viruses up to zooplankton) variables, thanks to the addition of sediment traps, frequent research vessel?(R/V) visits for seawater–plankton sampling and an acoustic Doppler current profiler?(ADCP) delivering information on macrozooplankton–micronekton vertical migration (in the epipelagic to mesopelagic layer). Gliders and drifters are the new (currently under integration to the existing system) platforms, supporting BGC monitoring. Land-based facilities, such as data centres, technical support infrastructure, calibration laboratory and mesocosms, support and give added value to the observatory. The data gathered from these platforms are used to improve the quality of the BGC-ecosystem model predictions, which have recently incorporated atmospheric nutrient deposition processes and assimilation of satellite Chl- a data. Besides addressing open scientific questions at regional and international levels, examples of which are presented, the observatory provides user-oriented services to marine policy makers and the society, and is a technological test bed for new and/or cost-efficient BGC sensor technology and marine equipment. It is part of European and international observing programs, playing a key role in regional data handling and participating in harmonization and best practices procedures. Future expansion plans consider the evolving scientific and society priorities, balanced with sustainable management.
机译:在适当的时空范围内以及在连续的长期数据采集方案下,同时检查海-海相互作用,沿海-开放海洋过程和物理-生物地球化学过程的海洋观测普遍缺乏。在地中海,由于其营养贫瘠的特性,特别是在盆地东部,由此导致的知识鸿沟和观测挑战不断增加。贫营养的克里特岛海域的生物地球化学被认为可以代表更大的地中海地区,最大可达10 6 km 2 ,了解其特征甚至在更大的海洋尺度上也很有用,自从地中海被认为是全球海洋的缩影模型以来。在过去的几十年中,尤其是自创建POSEIDON观测系统以来,克里特海中生物地球化学(BGC)观测的时空覆盖范围逐渐增加,该系统采用了多平台,多变量方法来支持BGC数据采集。当前POSEIDON系统的状态包括开放式和沿海固定平台,Ferrybox?(FB)系统和Bio-Argo自主浮标,可作为叶绿素a(Chl-a),O 2 的代理远程传递荧光。 sub>,pH和p CO 2 数据以及BGC相关的物理变量。自2010年以来,由于增加了沉积物收集器,经常使用的研究容器,该清单已进一步扩展到其他BGC(营养物,垂直颗粒物通量),生态系统和生物多样性(从病毒到浮游动物)变量。 )进行海水-浮游生物采样和声学多普勒电流剖面仪(ADCP)的访问,提供有关大型浮游动物-微浮游动物垂直迁移(在上层到中弹性层)的信息。滑翔机和浮标是新的(当前正在集成到现有系统中)平台,支持BGC监视。陆地设施,例如数据中心,技术支持基础设施,校准实验室和中观宇宙,为天文台提供了支持并为其增添了价值。从这些平台收集的数据用于提高BGC-生态系统模型预测的质量,该模型预测最近结合了大气营养物沉积过程和卫星Chla数据的同化。除了在区域和国际层面解决开放式科学问题外,还提供实例,该天文台还为海洋政策制定者和社会提供面向用户的服务,并且是新的和/或具有成本效益的BGC传感器技术的技术测试平台,船用设备。它是欧洲和国际观测计划的一部分,在区域数据处理中发挥重要作用,并参与统一和最佳实践程序。未来的扩展计划考虑了不断发展的科学和社会优先事项,同时兼顾了可持续管理。

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