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首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Civil Engineering >Long-Term Macro-Scale Assessment of Wave Power of Black Sea by an Optimized Numerical Model
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Long-Term Macro-Scale Assessment of Wave Power of Black Sea by an Optimized Numerical Model

机译:优化数值模型对黑海波浪功率的长期宏观评估

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摘要

Sea wave power is one of the cleanest renewable energy resources with the potential to mitigate the challenges of global warming and climate change while contributing to the ever-increasing energy demand. Studies show that wave energy production is closely related to wave height and wave period. Accordingly, the potential assessment and characterization of wave energy is vital for planning, production and utilization of wave energy. This study investigated the monthly, seasonal and annual wave energy characteristics of the Black Sea using the third-generation, state-of-the-art numerical model, MIKE 21 SW, based on 37 years of wind data obtained from the European Centre for Medium-Range Weather Forecasts. To set up the model and represent actual field conditions, computational mesh of the study domain was optimized and then the model was calibrated using data observed at nine points. According to the results of the study, the maximum mean monthly wave energy was obtained in the months of January and February. In terms of seasons, the maximum mean seasonal wave energy was observed in the winter. The analysis of the results at annual scale showed that the western part of the sea has more wave energy potential than the eastern part.
机译:海浪发电是最清洁的可再生能源之一,有潜力缓解全球变暖和气候变化的挑战,同时满足不断增长的能源需求。研究表明,波浪能的产生与波浪高度和波浪周期密切相关。因此,波浪能的潜在评估和表征对于波浪能的计划,生产和利用至关重要。这项研究使用了第三代最先进的数值模型MIKE 21 SW,根据从欧洲中型中心获得的37年风况数据,调查了黑海的月度,季节和年度波浪能特征。 -范围天气预报。为了建立模型并代表实际的野外条件,对研究领域的计算网格进行了优化,然后使用在9个点观察到的数据对模型进行了校准。根据研究结果,在1月和2月获得了最大的平均月波能。就季节而言,在冬季观测到最大平均季节性波浪能。对年度结果的分析表明,海洋西部比东部具有更多的波能潜力。

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