Development and Assessment of a Hybrid Breakwater-Integrated Wave Energy Converter

T. Calheiros-Cabral, A. Majidi, V. Ramos, Gianmaria Giannini, P. Rosa-Santos, F. Taveira-Pinto
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引用次数: 4

Abstract

Harnessing and using marine renewable energy at seaports is a promising solution to put these energy-intensive infrastructures on the right track to energy self-sufficiency and environmental sustainability, reducing their carbon footprint. This paper presents a summary of the main conclusions and achievements of a recently concluded R&D project that encompassed the experimental study of an innovative hybrid wave energy converter integrated into a case-study rubble-mound breakwater in the Port of Leixões, Portugal. It also describes the prospective studies planned in two ongoing projects, PORTOS – Ports Towards Energy Self-Sufficiency and WEC4Ports – A hybrid Wave Energy Converter for Ports, intended to further develop and assess this promising technology. It has been demonstrated that its wave-to-wire efficiency and annual energy production are 27.3% and 35.0 MWh/m per year, respectively, for the case-study location. Hence, a 240 m long device could provide more than half of the port’s electricity consumption, which vows for the device’s potential. Moreover, the impact of its integration into the case-study breakwater showed that it leads to a 50% reduction of overtopping discharges over the structure, and no significant effects on the structure’s wave reflection, although the stability of the toe berm blocks was negatively impacted. Overall, the conclusions obtained are favourable to the integration of this technology into rubble-mound breakwaters. Notwithstanding, further research is still needed, namely in terms of wave forces acting upon the structure, important for the assessment of the functional performance and lifecycle readiness of the technology, and the use of PTO control strategies. This is being addressed in PORTOS and WEC4Ports projects.
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混合防波堤-集成波能转换器的研制与评价
在海港利用和使用海洋可再生能源是一个很有前途的解决方案,可以使这些能源密集型基础设施走上正确的轨道,实现能源自给自足和环境可持续性,减少碳足迹。本文概述了最近结束的一个研发项目的主要结论和成果,该项目包括将一种创新的混合波能转换器集成到葡萄牙Leixões港的一个案例研究碎石丘防波堤的实验研究。它还描述了两个正在进行的项目中计划进行的前瞻性研究,PORTOS -港口实现能源自给自足和WEC4Ports -港口混合波浪能量转换器,旨在进一步开发和评估这一有前途的技术。研究表明,在案例研究地点,其波线转换效率和年发电量分别为27.3%和35.0 MWh/m /年。因此,一个240米长的设备可以提供超过一半的港口电力消耗,这预示着该设备的潜力。此外,将其整合到案例研究防波堤中的影响表明,它导致结构上的过顶流量减少50%,并且对结构的波反射没有显著影响,尽管脚趾护堤块的稳定性受到负面影响。总的来说,所得结论有利于将该技术应用于碎石丘防波堤。尽管如此,仍然需要进一步的研究,即作用在结构上的波浪力,这对于评估该技术的功能性能和生命周期准备情况以及PTO控制策略的使用非常重要。这在PORTOS和WEC4Ports项目中得到了解决。
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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
期刊最新文献
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