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Evaluation of the shoreline effect of the marine energy farms in different coastal environments

机译:评估不同沿海环境中海洋能源农场的海岸线效应

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The objective of the proposed work is to assess the possible effects on the shoreline dynamics of the marine energy farms. Three different coastal environments have been considered as case studies. The first area is located in the Portuguese continental nearshore at the European western coast of the Atlantic Ocean. The second in the Mediterranean Sea in the coastal environment of Sardinia Island and the third on the western side of the Black Sea in the Romanian nearshore. Besides the fact that, from a geographical point of view, the three areas targeted are located in very different zones, they represent also coastal environments with very different characteristics. A computational framework joining a spectral phase averaged wave model with a 1D parametric circulation model has been used. The numerical models are SWAN (acronym from Simulating Waves Nearshore) for the waves and NSSM (the Navy Standard Surf Model) for estimating the longshore currents. For each case study, the main characteristics of the environmental matrix have been analyzed first. Then, various transmission scenarios have been, designed considering also in each case different distances from the marine energy farm to the shoreline. A general conclusion of the proposed work is that the longshore currents are very sensitive to the presence of the marine energy farms and that is why such farms can also play an active role in coastal protection. Moreover, since it presents in parallel similar analyses for three coastal environments that have very different features, the present study provides a more comprehensive picture concerning the medium to long term impact on the shoreline dynamics of the future marine energy farms operating in the nearshore.
机译:拟议工作的目的是评估对海洋能源农场的海岸线动态可能产生的影响。案例研究考虑了三种不同的沿海环境。第一个区域位于大西洋欧洲西部海岸的葡萄牙大陆近岸。撒丁岛岛沿岸环境在地中海第二,在罗马尼亚近岸黑海西侧第三。从地理角度来看,除了三个目标区域位于非常不同的区域外,它们还代表了具有非常不同特征的沿海环境。已使用将光谱相位平均波模型与一维参数循环模型结合在一起的计算框架。数值模型是用于波浪的SWAN(近海模拟波浪的缩写)和用于估算近岸海流的NSSM(海军标准冲浪模型)。对于每个案例研究,首先分析了环境矩阵的主要特征。然后,已经设计了各种传输方案,在每种情况下还考虑了从海洋能源农场到海岸线的不同距离。拟议工作的总体结论是,近岸洋流对海洋能源农场的存在非常敏感,这就是为什么这样的农场也可以在沿海保护中发挥积极作用的原因。此外,由于它并行呈现了三个具有非常不同特征的沿海环境的相似分析,因此本研究提供了一个更全面的图景,涉及未来在近岸运营的海洋能源农场对海岸线动态的中长期影响。

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