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A coupled hydrodynamic and ecological model to manage water quality in Ria Formosa coastal lagoon

机译:Ria Formosa沿海泻湖水动力和生态耦合模型用于管理水质

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Nitrate and urban waste water directives have raised the need for a better understanding of coastal systems in the European Union. The incorrect application of these directives can lead to important ecological or social penalties. In this paper this problem is addressed to Ria Formosa Coastal Lagoon. Ria Formosa hosts a Natural Park, important ports of the southern Portuguese coast and significant bivalve aquaculture activity. Four major urban waste water treatment plants discharging into the lagoon are considered in this study. Its treatment level must be selected, based on detailed information from a monitoring program and on a good knowledge of the processes determining the fate of the material discharged into the lagoon. In this paper the results of a monitoring program and simulations using a coupled hydrodynamic and water quality/ecological model, MOHID, are used to characterise the system and to understand the processes in Ria Formosa. It is shown that the water residence time in most of the lagoon is quite low, of the order of days, but it can be larger in the upper parts of the channels where land generated water is discharged. The main supply of nutrients to the lagoon comes from the open sea rather than from the urban discharges. For this reason the characteristics and behaviour of the general lagoon contrasts with the behaviour of the upper reaches of the channels where the influence of the waste water treatment plants are high. In this system the bottom mineralization was found to be an important mechanism, and the inclusion of that process in the model was essential to obtain good results.
机译:硝酸盐和城市废水指令提出了对欧盟中沿海系统的更好理解的需求。这些指令的不正确使用会导致严重的生态或社会惩罚。在本文中,这个问题针对的是Ria Formosa沿海泻湖。 Ria Formosa拥有一个自然公园,葡萄牙南部沿海的重要港口和重要的双壳类水产养殖活动。这项研究考虑了四个主要的城市污水处理厂排入泻湖。必须根据监控程序的详细信息以及对确定排入泻湖的物料的去向的过程的充分了解来选择其处理水平。在本文中,监测程序的结果和使用流体动力学和水质/生态模型MOHID进行模拟的结果用于表征系统并了解Ria Formosa中的过程。结果表明,在大多数泻湖中,水的停留时间很短,只有几天左右,但在排出陆地产生的水的河道上部,其停留时间可能会更长。泻湖的主要养分来自公海,而不是城市的污水。因此,一般泻湖的特性和行为与废水处理厂影响较大的河道上游的行为形成对比。在该系统中,发现底部矿化是一个重要的机理,并且在模型中包括该过程对于获得良好的结果是必不可少的。

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