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Ecosystem modelling: Towards the development of a management tool for a marine coastal system part-II, ecosystem processes and biogeochemical fluxes

机译:生态系统建模:致力于开发用于海洋沿海系统第二部分,生态系统过程和生物地球化学通量的管理工具

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Pagasitikos gulf is a semi-enclosed basin highly influenced both by anthropogenic activities (inflow of nutrients at the north and west parts) as well as by water exchange between the gulf and the Aegean Sea at its south part (Trikeri channel) resulting in the development of functional sub-areas within the gulf. Thus the inner part is characterised by eutrophic conditions with sporadic formation of harmful algal blooms whilst the central part acts as a buffer with mesotrophic characteristics influenced by the outer area. In a companion paper, the circulation fields and the development of water masses in the Pagasitikos gulf were explored. The aim of this study is to investigate the interactions between the physical and biogeochemical systems in the Pagasitikos gulf by coupling advanced hydrodynamic and ecological models. The simulation system comprises two on-line coupled sub-models: a three-dimensional hydrodynamic model based on the Princeton Ocean Model (POM) and an ecological model adapted from the European Regional Seas Ecosystem Model (ERSEM) for this specific ecosystem. After a model spin up period of 10. years, the results from an annual simulation are presented. Emphasis is given to the description of the spatial and temporal variability of the ecosystem parameters as well as to the relationship between physical forcing and the evolution of the ecosystem along with other factors affecting the nutrient cycling and primary production. A cost function is used for the validation of model results with field data. Simulation results are in good agreement with in-situ data illustrating the role of the physical processes in determining the evolution and variability of the ecosystem, as well as highlighting the potential usefulness of the model as an operational tool to support environmental management decisions.
机译:Pagasitikos海湾是一个半封闭的盆地,受到人为活动(北部和西部的养分流入)以及海湾与南部爱琴海(Trikeri航道)之间的水交换的强烈影响海湾中的功能子区域。因此,内部的特征是富营养化条件,偶尔会形成有害藻华,而中央部分则充当缓冲层,其中营养特征受外部区域的影响。在伴随文件中,探讨了帕加西蒂科斯海湾的环流场和水团的发育。这项研究的目的是通过耦合先进的水动力和生态模型研究Pagasitikos海湾的物理和生物地球化学系统之间的相互作用。该模拟系统包括两个在线耦合子模型:基于普林斯顿海洋模型(POM)的三维水动力模型和针对该特定生态系统的改编自欧洲区域海洋生态系统模型(ERSEM)的生态模型。经过10年的模型加速期后,将显示年度模拟的结果。重点描述了生态系统参数的时空变异性,以及物理强迫与生态系统演化之间的关系以及影响养分循环和初级生产的其他因素。成本函数用于通过现场数据验证模型结果。模拟结果与现场数据非常吻合,这些数据说明了物理过程在确定生态系统的演化和可变性中的作用,并强调了该模型作为支持环境管理决策的操作工具的潜在实用性。

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