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A dual-functional wave-power plant for wave-energy extraction and shore protection: A wave-flume study

机译:用于波浪能提取和海岸保护的双功能波浪发电厂:波浪水槽研究

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The fundamental roadblock toward commercial-scale wave power operations is cost. The main objective of this work was to address the cost challenge facing wave energy commercialization through cost-sharing with pile breakwaters to be built for shore protection. This was achieved in this study through a dual-functional wave power plant for generation of wave-power electricity and protection against coastal erosion for sustainable coastal development. The dual-functional wave-power plant was formed by integrating oscillating-water-column (OWC) devices into a pile breakwater, with each pile being an OWC-pile equipped with a power take-off device. The power extraction efficiency and hydrodynamic characteristics of the dual-functional wave-power plant were measured in a wave flume under various wave conditions. An orifice was used at the top of the pneumatic chamber of each OWC-pile to simulate the power take-off device. To evaluate the performance of the power plant in wave power extraction and shore protection, the surface elevation and pressure inside the OWC chamber, as well as the scattered waves, were measured. It was found that comparing to a standalone OWC-pile device with an identical design and geometric characteristics, an OWC-pile in the dual -functional wave-power plant could achieve significantly larger power-extraction efficiency. Comparing to a pile breakwater with the same dimensions, the wave transmission and reflection of the dual-functional wave-power plant were both weaker, especially the wave reflection, which is beneficial for structure safety and shore protection. Based on the Froude's law of similarity and an estimation of the effect of air compressibility at full scale, an evaluation of the performance of a dual -functional wave-power plant at full scale was also provided. The findings of this work promote close collaboration between wave-energy utilization community and the shore-protection community for commercial-scale deployment of wave energy converters and contribute to making wave energy economically competitive.
机译:商业规模波浪发电运营的基本障碍是成本。这项工作的主要目的是通过分摊成堆的防波堤的成本来解决波浪能商业化所面临的成本挑战,这些桩式防波堤将用于海岸保护。在这项研究中,这是通过使用双重功能的波浪发电厂来实现的,该波浪发电厂可产生波浪电力并保护海岸免受侵蚀,从而实现可持续的沿海发展。通过将振荡水柱(OWC)设备集成到桩防波堤中来形成双功能波浪发电厂,每个桩都是配备有取力装置的OWC桩。在各种波浪条件下的波浪水槽中测量了双功能波浪发电厂的功率提取效率和水动力特性。在每个OWC桩的气动室顶部使用一个孔口来模拟取力器。为了评估发电厂在波浪发电和岸电保护方面的性能,对OWC室内的表面高度和压力以及散射波进行了测量。已发现,与具有相同设计和几何特性的独立OWC桩设备相比,双功能波浪发电厂中的OWC桩可以显着提高功率提取效率。与相同尺寸的桩防波堤相比,双功能波浪发电厂的波传播和反射都较弱,尤其是波反射,有利于结构安全和海岸保护。根据弗劳德相似定律,并通过对空气可压缩性的全面影响进行估算,还可以对双功能波浪发电厂的整体性能进行评估。这项工作的发现促进了波浪能利用社区和海岸保护社区之间的紧密合作,以实现波浪能转换器的商业规模部署,并有助于使波浪能在经济上更具竞争力。

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