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首页> 外文期刊>Journal of Waterway, Port, Coastal and Ocean Engineering >Pressures and forces on an oscillating water column-type wave energy caisson breakwater
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Pressures and forces on an oscillating water column-type wave energy caisson breakwater

机译:振荡水柱式波浪能沉箱防波堤上的压力和作用力

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摘要

Wave energy is a renewable energy source that has an immense potential for exploitation as clean energy. Studies on the oscillating water column (OWC) widely pertain to the optimization of its geometries to enhance the wave power absorption; comparatively, the wave-induced loadings on such structures have received lesser attention. Hence, in this study, a detailed experimental investigation was undertaken to investigate the nature and magnitude of the dynamic pressures exerted on different components of the OWC and the total force on the structure subjected to regular wave incidence. In general, the forces were found to increase with wave steepness. In the structural design of the lip wall of the OWC, the seaward exerted pressure also should be considered as a critical parameter because it governs the stability toward the seaside. The total horizontal wave force was noted to be 2.5 to 3 times greater than the total vertical wave force. A comparison of the measured force with results from a standard formula for wave force estimation on vertical wall revealed that the formula overestimated the shoreward force and underestimated the seaward force in the low-frequency zone.
机译:波浪能是一种可再生能源,具有作为清洁能源进行开发的巨大潜力。对振荡水柱(OWC)的研究广泛涉及优化其几何形状以增强波功率吸收。相比之下,波浪在此类结构上引​​起的载荷受到的关注较少。因此,在这项研究中,进行了详细的实验研究,以研究施加在OWC的不同组件上的动压力的性质和大小以及经受规则波入射的结构上的总力。通常,发现力随波陡度增加。在OWC的唇壁结构设计中,向海施加的压力也应被视为关键参数,因为它决定着向海边的稳定性。注意到总水平波浪力是总垂直波浪力的2.5至3倍。将测得的力与垂直壁上波浪力估算的标准公式得出的结果进行比较,发现该公式高估了低频区的向岸力,而低估了向海力。

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