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Hydrodynamic performance of a floating breakwater as an oscillating-buoy type wave energy converter

机译:浮动防波堤作为振荡浮标型波浪能转换器的流体力学性能

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Combined floating breakwater and wave energy converter systems have the potential to provide a cost-effective solution to offshore power supply and coastal protection. This will make wave energy economically competitive and commercial-scale wave power operations possible. This paper investigates the hydrodynamic features of wave energy converters that meet the dual objectives of wave energy extraction and attenuation for such a combined system. A two-dimensional numerical model was established using Star-CCM+ commercial software based on viscous Computational Fluid Dynamics theory to investigate the hydrodynamic performance of an oscillating buoy Wave Energy Converter (WEC) type floating breakwater under regular waves. The model proposed in this paper was verified with published experimental results. The hydrodynamics of symmetric and asymmetric floaters were investigated to demonstrate their wave attenuation and energy extraction performance, including square bottomed, triangular bottomed (with and without a baffle plate), and the Berkley Wedge. The asymmetric floaters were found to have higher power conversion efficiency and better wave attenuation performance, especially the Berkeley Wedge bottom device and the triangular-baffle bottom device. The triangular-baffle bottom device with a simpler geometry achieved similar wave attenuation and energy extraction performance characteristics to that of the Berkeley Wedge device. The maximum energy conversion efficiency of the triangular-baffle bottom floater reached up to 93%, an impressive WEC device among many designs for wave energy conversion. There may be a great potential for this newly proposed triangular-baffle bottom WEC type of floater to be an ideal coastal structure for both coastal protection and wave energy extraction.
机译:浮动防波堤和波浪能转换器组合系统有潜力为海上供电和海岸保护提供经济高效的解决方案。这将使波浪能在经济上具有竞争力,并实现商业规模的波浪能运行。本文研究了波能转换器的水动力特性,该波能转换器满足这种组合系统的波能提取和衰减双重目标。基于粘性计算流体动力学理论,使用Star-CCM +商业软件建立了二维数值模型,以研究规则波浪下振荡浮标波能量转换器(WEC)型浮式防波堤的水动力性能。本文提出的模型已通过公开的实验结果进行了验证。对对称和不对称浮子的流体动力学进行了研究,以证明它们的波衰减和能量提取性能,包括方底,三角形底(带或不带挡板)以及Berkley Wedge。发现非对称浮子具有更高的功率转换效率和更好的波衰减性能,尤其是伯克利楔形底部装置和三角形挡板底部装置。具有更简单几何形状的三角形隔板底部装置实现了与伯克利楔形装置类似的波衰减和能量提取性能特征。三角挡板底部浮子的最大能量转换效率高达93%,这在许多用于波浪能转换的设计中都是令人印象深刻的WEC设备。这种新近提出的三角隔板底部WEC型浮子具有很大的潜力,使其成为用于海岸保护和波浪能提取的理想海岸结构。

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