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Modelling the water mass exchange through navigational channels connecting adjacent coastal basins - application to the Channel of Potidea (North Aegean Sea)

机译:通过连接相邻沿海盆地的航道对水质交换进行建模-应用于波提达河道(北爱琴海)

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The research objective is the detection of the mechanism of the water mass exchange through a navigational channel connecting two adjacent coastal basins. The research involves the application of a mathematical model in parallel to in-situ measurements. The hydrodynamic circulation in the greater area of the NW Aegean Sea is modeled by means of a barotropic circulation model. Wind, Corio-lis and Tide are the main forcings taken into account. The flow through the channel is resolved at a subgrid scale by means of a local open channel flow model. The comparison between field measurements, recorded during a limited period, and the model results supports the model verification. The study is integrated by an operational application of the model under various realistic forcings. The results help to gain a better understanding of the mechanisms regulating the water mass exchange and the consequent interaction between two adjacent connected coastal basins. From the case study of the Potidea channel it is revealed that the water mass exchange under mean wind forcing is of the same order as the one induced by the tidal forcing.
机译:研究目的是通过连接两个相邻沿海盆地的航道来检测水质交换的机理。这项研究涉及将数学模型与现场测量并行应用。利用正压环流模型对西北爱琴海较大区域的水动力环流进行建模。风,科里奥利和潮汐是考虑的主要因素。通过通道的流量通过局部明渠流量模型在亚网格规模上解析。有限期间内记录的现场测量结果与模型结果之间的比较可支持模型验证。该研究通过在各种现实强迫下对模型的操作应用进行整合。结果有助于更好地了解调节水质交换的机制以及两个相邻相连沿海盆地之间的相互作用。从波提达河河道的案例研究中可以看出,平均风强迫下的水质交换与潮汐强迫所引起的交换相同。

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