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Overall-efficiency optimisation in OWC devices

机译:OWC设备中的整体效率优化

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It is shown that due 10 power take-off losses, optimal control provides maximum energy absorption, but not maximum energy production. A new reactive control criterion in the frequency-domain is deduced assuming constant power take-off efficiency, respectively, in the power feeding and power absorption parts of the wave cycle. If applied in the time-domain, this criterion requires the incident wave to be predicted some time into the future. Whilst the OWC type of Wave Energy Converters (WEC) is presented in the paper, the extension to WECs of the floating body type is also considered. Illustrative numerical results for a two-dimensional OWC of simple geometry are presented, which include the performance of this device in three wave spectra with increasing demands of active control for improved energy production. Linear hydrodynamic theory is considered throughout the paper.
机译:结果表明,由于10个取力器损耗,最佳控制可提供最大的能量吸收,但不能提供最大的能量产生。假定在波周期的馈电和功率吸收部分分别具有恒定的取力效率,则推导出频域中的新的无功控制准则。如果在时域应用,则该标准要求在未来某个时间预测入射波。虽然在本文中介绍了OWC类型的波能转换器(WEC),但也考虑了对浮体类型的WEC的扩展。给出了具有简单几何形状的二维OWC的示例性数值结果,其中包括该设备在三个波谱中的性能,以及对主动控制的需求不断提高,以提高能源生产效率。整篇文章都考虑了线性流体力学理论。

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