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The impact of sea surface currents in wave power potential modeling

机译:海面电流对波浪功率势模型的影响

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摘要

The impact of sea surface currents to the estimation and modeling of wave energy potential over an area of increased economic interest, the Eastern Mediterranean Sea, is investigated in this work. High-resolution atmospheric, wave, and circulation models, the latter downscaled from the regional Mediterranean Forecasting System (MFS) of the Copernicus marine service (former MyOcean regional MFS system), are utilized towards this goal. The modeled data are analyzed by means of a variety of statistical tools measuring the potential changes not only in the main wave characteristics, but also in the general distribution of the wave energy and the wave parameters that mainly affect it, when using sea surface currents as a forcing to the wave models. The obtained results prove that the impact of the sea surface currents is quite significant in wave energy-related modeling, as well as temporally and spatially dependent. These facts are revealing the necessity of the utilization of the sea surface currents characteristics in renewable energy studies in conjunction with their meteo-ocean forecasting counterparts.
机译:在这项工作中,研究了东地中海对海面海流对波浪能势的估计和建模的影响。高分辨率大气,海浪和环流模型(后来从哥白尼海洋服务的区域地中海预报系统(MFS)(以前是MyOcean区域MFS系统)降级了)。建模数据通过各种统计工具进行分析,这些工具不仅测量主波特征的潜在变化,而且还测量海浪流时海浪能量的总体分布和主要影响海浪的波浪参数的分布。强迫波浪模型。所获得的结果证明,在与波能有关的建模中,海面洋流的影响非常显着,并且在时间和空间上都具有依赖性。这些事实揭示了在可再生能源研究中利用海面洋流特征及其气象海洋预报对应物的必要性。

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