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Hydrodynamic optimisation of an axisymmetric floating Oscillating Water Column type wave energy converter with an enlarged inner tube

机译:扩大内管轴对称浮动振荡水柱型波能变换器的流体动力学优化

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Wave Energy Converters (WECs) that are classified as Floating Oscillating Water Columns (FOWCs) of point absorber type are designed to achieve resonance, at frequencies that are favourable for wave energy extraction. The resonance frequency of a FOWC type WEC is highly dependent on the added mass of its OWC, which often requires a long spar tube to achieve well-performing hydrodynamics. A proposed measure for driving down the cost of the converter is to reduce its length, while finding another way of achieving the desired OWC added mass. Frequency-domain modelling and hydrodynamic optimisation of the Spar-buoy OWC was carried out for an enlarged spar tube segment inside the floater. Results are compared to those of buoys with equal spar and inner tube diameters. Frequency responses of optimised buoy geometries - with and without enlarged inner tubes - explore the differences in their hydrodynamics. Expanding the inner tube diameter of the Spar-buoy OWC may increase energy extraction by up to 6.7% and reduce the buoy mass by up to 11.4%, when operating in a Portuguese offshore location. A sensitivity analysis on mean annual pneumatic power to changes in inner tube diameter and spar tube length was performed. (C) 2020 Elsevier Ltd. All rights reserved.
机译:被分类为点吸收器型浮动水柱(FOWC)的波能转换器(WECS)设计成在有利于波能提取的频率下实现共振。 FOWC型WEC的共振频率高度依赖于其OWC的添加质量,这通常需要长翼管来实现良好的流体动力学。用于降低转换器的成本的提出措施是减少其长度,同时找到一种实现所需的OWC增加的质量的另一种方法。对浮子内部的扩大的翼梁管段进行了频域建模和水动力学优化。结果与具有相等翼梁和内管直径的浮标的结果进行比较。优化浮标几何形状的频率响应 - 内外管的频率响应 - 探讨其流体动力学的差异。在葡萄牙海上地点运行时,膨胀阀体浮标OWC的内管直径可提高能量提取高达6.7%,并将浮标质量降低至11.4%。进行了对内管直径和翼梁长度变化的平均气动功率的敏感性分析。 (c)2020 elestvier有限公司保留所有权利。

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