利用三维辐射模型分析实时动态控制下摆线波能量转换器的效率

Q3 Engineering
A. Mohtat, C. Fagley, Kedar Chitale, S. Siegel
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引用次数: 3

摘要

海浪提供了巨大的、不间断的可再生能源,分布在沿海人口密集的地区。来自海浪的清洁能源可以为当地电网做出贡献,而不需要长期的电力储存,但由于目前从海浪中提取能源的成本很高,目前还没有商业海浪农场在运营。波浪能转换器(WEC)设备类别之一是波浪终止器,它显示了从海浪中产生经济能源的潜力。这项工作研究摆线波能量转换器(CycWEC),这是一个单侧,升力为基础的波终止器与耦合水翼。利用CycWEC存在时的三维波场控制体积分析模型,估算了CycWEC从海浪中提取的能量。在反馈控制下运行CycWEC,以最大限度地从入射波中提取能量,并研究了不同入射规则波、不规则波和短波峰波的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficiency analysis of the cycloidal wave energy convertor under real-time dynamic control using a 3D radiation model
Ocean waves provide a vast, uninterrupted resource of renewable energy collocated around large coastal population centers. Clean energy from ocean waves can contribute to the local electrical grid without the need for long-term electrical storage, yet due to the current high cost of energy extraction from ocean waves, there is no commercial ocean wave farm in operation. One of the wave energy converter (WEC) device classes that show the potential to enable economic energy generation from ocean waves is the class of wave terminators. This work investigates the Cycloidal Wave Energy Converter (CycWEC), which is a one-sided, lift-based wave terminator operating with coupled hydrofoils. The energy that the CycWEC extracted from ocean waves was estimated using a control volume analysis model of the 3D wave field in the presence of the CycWEC. The CycWEC was operated under feedback control to extract the maximum amount of energy possible from the incoming waves, and the interaction with different incoming regular, irregular, and short crested waves was examined.
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来源期刊
International Marine Energy Journal
International Marine Energy Journal Engineering-Ocean Engineering
CiteScore
1.70
自引率
0.00%
发文量
24
审稿时长
12 weeks
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