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Coast/breakwater-integrated OWC: A theoretical model

机译:海岸/防堤综合OWC:理论模型

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摘要

Integrating wave energy converters into coastal structures such as breakwaters, seawalls or jetties not only offers benefits in terms of construction costs but also improves wave energy extraction. In this paper a novel theoretical model based on linear potential flow theory is developed to study the performance of an oscillating water column (OWC) integrated into a vertical structure in water of finite water depth. The model has three fundamental advantages relative to previous works: no thin-wall restriction (the thickness of the OWC chamber wall is considered), no singularities, and far fewer truncating terms in the eigen-function expansions. The OWC chamber is a vertical cylinder semi-embedded in the structure with a submerged, open bottom. As water waves impinge on the structure, the water column in the chamber oscillates and drives an air turbine installed at the chamber top to extract wave power. Using linear wave theory, the velocity potential in the water domain is decomposed into scattering and radiation potentials whose unknown coefficients are determined by the eigen-function matching method. Upon successful validation, the model is used to investigate the influence of the thickness of the chamber wall and the radius and submergence of the chamber on wave power absorption.
机译:将波能转换器集成到沿海结构,如防波堤,海堤或码头,不仅在施工成本方面提供了益处,而且还改善了波动力提取。本文开发了一种基于线性电位流动理论的新型理论模型,以研究振荡水柱(OWC)集成到有限水深水中垂直结构中的性能。该模型相对于以前的作品具有三个基本优势:没有薄壁限制(OWC室壁的厚度被认为),没有奇点,并且在特征函数扩展中截断术语远远较少。 OWC室是一个垂直圆筒半嵌入结构中,浸没在底部。随着水波撞击结构,腔室中的水柱振荡并驱动安装在腔室顶部的空气涡轮机以提取波功率。使用线性波理论,水域中的速度电位分解成散射和辐射电位,其未知系数由特征函数匹配方法确定。成功验证后,该模型用于研究腔室壁厚的影响以及腔室在波浪功率吸收上的厚度和淹没。

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