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3D EFFICIENCY ANALYSIS OF CYCLOIDAL WAVE ENERGY CONVERTERS IN OBLIQUE WAVE FIELDS

机译:斜波场中回旋能量转换器的3D效率分析

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Numerical results from a 3D diffraction model are presented where a Cycloidal Wave Energy Converter (CycWEC) is interacting with an incoming straight crested Airy Wave. The diffraction model was developed in response to experimental observations from 1:10 scale experiments which were conducted in the Texas A&M Offshore Technology Research center wave basin. These experiments were the first investigations involving a CycWEC where three dimensional wave diffraction effects were present due to the fact that the span of the CycWEC was much smaller than the width of the basin. The diffraction model predicted the observed surface wave patterns in the experiment well, and showed that diffraction induced wave focusing increased the recoverable wave power beyond the 2D predictions for small CycWEC spans, while approaching the 2D limit for very large spans. The numerical model was subsequently used to estimate the sensitivity of the CycWEC to misalignment between the incoming waves and the WEC shaft. The loss in efficiency was found to be strongly dependent on the ratio between WEC span and incoming wavelength, where short spans (on the order of one wave length or less) which are realistic for actual ocean deployment showed only minor reductions in efficiency, while very long spans were found to be more sensitive to misalignment.
机译:给出了3D衍射模型的数值结果,其中摆线波能量转换器(CycWEC)与入射的直峰艾里波相互作用。衍射模型是根据在德州A&M海洋技术研究中心波浪盆地进行的1:10规模实验的实验观察结果开发的。这些实验是涉及CycWEC的首次研究,由于CycWEC的跨度比盆地的宽度小得多,因此存在三维波衍射效应。衍射模型可以很好地预测实验中观察到的表面波模式,并表明,对于小CycWEC跨度,衍射感应波聚焦增加了可恢复波功率,超过了二维预测,而对于非常大跨度则接近了二维极限。数值模型随后用于估计CycWEC对入射波和WEC轴之间未对准的敏感性。发现效率损失在很大程度上取决于WEC跨度与入射波长之间的比率,其中对于实际海洋部署而言切合实际的短跨度(大约一个波长或更短的跨度)显示出效率的小幅降低,而发现大跨度对未对准更敏感。

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