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Design and Cost Evaluation of a Deep Water Support Structure for a Wind Turbine in Central Mediterranean Waters

机译:地中海水域风力涡轮机深水支撑结构的设计与成本评价

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This paper describes an evaluation of the technical and economic issues related to-the setting up of an offshore wind farm at 70 metres depth in the Central Mediterranean near Malta. A literature review and preliminary conceptual analysis are first conducted to determine the most suitable support structure type for the site considered. Conclusions from this review and analysis show that the jacket is the most suitable type of fixed bottom support structure for the conditions in the Central Mediterranean region. Other design stages are then conducted to design the jacket support structure using the state of the art wind turbine software Bladed [1] and relevant standards. The jacket design is carried out for the central Mediterranean conditions as well as for another site in Scotland where two offshore wind turbines have already been constructed on jacket substructures (the Beatrice wind farm at Moray Firth). The design for the Scottish site served as a benchmark for comparing the results obtained with those for the Mediterranean site. This was done both for the design and for the later cost analysis stage of the wind farm. To conclude the study a cost model was implemented to investigate the economic feasibility of a wind farm at the two sites considered. From the results, it can be concluded that the more benign environmental conditions in the Mediterranean and the better seabed bearing capacity result in lower support structure costs even though the sea water is deeper. On the other hand the poorer Mediterranean wind resource still makes electricity cost considerably higher than at Moray Firth.
机译:本文介绍了与在马耳他附近的中央地中海的70米深度的海上风电场建立有关的技术和经济问题的评估。首先进行文献综述和初步概念分析,以确定所考虑的网站最合适的支持结构类型。结论来自本综述和分析表明,夹克是中央地中海地区条件的最合适类型的固定底部支撑结构。然后进行其他设计阶段,以使用艺术风力涡轮机软件Bladed [1]和相关标准的状态设计夹套支撑结构。夹克设计是为中央地中海条件开展的,以及苏格兰的另一个站点,其中两个海上风力涡轮机已经在夹克子结构上构建(Moray Firth的Beatrice风电场)。苏格兰网站的设计作为比较与地中海站点的结果获得的基准。这是为了设计和风电场的后续成本分析阶段完成。为了结束这项研究,实施了成本模式,以调查审议的两个站点的风电场的经济可行性。从结果中,可以得出结论,即使海水更深,地中海和更好的海底承载力也会导致较低的海底承载力导致较低的支撑结构成本。另一方面,较差的地中海风力资源仍然比Moray Fasth高得多的电力成本。

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