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Nonlinear modelling of a point-absorber wave energy converter based on the weak-scatterer approximation

机译:基于弱散射体近似的点吸收波能量转换器的非线性建模

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In this study, a nonlinear time-domain model based on the weak-scatterer approximation is developed to investigate the hydrodynamic performance of a point-absorber wave energy converter (WEC). The simplified WEC consists of a floating cylindrical buoy with a hemispherical bottom, a single tether and a power take-off (PTO) system. The efficiency and survivability of the WEC are analysed by the proposed numerical model in moderately steep regular waves and focused wave groups, respectively. The effects of wave steepness on the power absorption of the WEC and the PTO force are highlighted in the study of regular wave tests by comparison with a linear frequency-domain model, and the influence of the PTO damping coefficient on the performance is discussed. Then the survivability of the WEC in focused wave groups is analysed and validated against the published experimental data. It appears that in terms of the motion responses of the buoy and the mooring force, the present results have a satisfactory agreement with the experimental data. The time-frequency characteristics of the motion responses of the buoy are further analysed based on wavelet transforms.
机译:在该研究中,开发了一种基于弱散射体近似的非线性时域模型,以研究点吸收波能量转换器(WEC)的流体动力学性能。简化的WEC由具有半球形底部,单个系绳和动力起飞(PTO)系统的浮动圆柱形浮标组成。通过中等陡峭的常规波和聚焦波组的提议数值模型分析了WEC的效率和生存能力。通过与线性频率域模型的比较,在常规波试验研究中突出了波陡对WEC的功率吸收的影响,并讨论了PTO阻尼系数对性能的影响。然后针对已发表的实验数据分析并验证了对聚焦波组的WEC的生存能力。看来,就浮标的运动反应和系泊力而言,目前的结果与实验数据达成令人满意的协议。基于小波变换,进一步分析了浮标的运动响应的时频特性。

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