Determination of the Response Amplitude Operator of a tidal turbine as a spectral transfer function

Q3 Engineering
B. Gaurier, G. Germain, J. Facq
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引用次数: 2

Abstract

A transfer function determination method is proposed in this study to predict the unsteady fluctuations of the performance of a tidal turbine model. This method is derived from the Response Amplitude Operator (RAO) applied in the offshore industry to predict linear wave-induced loads on large structures. It is based on a spectral approach and requires the acquisition of a turbine parameter (e.g. torque, thrust, power or root-blade force) in synchronization with an upstream flow velocity measurement. On the frequency range where the causality between these two signals is proven, the transfer function is established using the ratio between the cross-spectral density and the spectral density of the incoming velocity.The linearity is verified using the coherence function, which shows validity for the turbine power in the lowest frequencies only. This transfer function is then used to reconstruct the power fluctuations which is compared to the recorded one for a particular flow condition with bathymetry generated turbulence. The result shows the dependence on the accurate location of the velocity measurement point used for the reconstruction. This point must exactly correspond to the expected turbine location, i.e. where the turbine response needs to be processed. Bearing in mind its limits, the method can be used to predict the loadings of extreme events on the turbine structure and the performance variations corresponding to the unsteady characteristics of a turbulent flow, for a better grid integration.
潮汐涡轮机响应振幅算子作为谱传递函数的确定
本文提出了一种传递函数确定方法来预测潮汐水轮机模型性能的非定常波动。该方法来源于响应振幅算子(RAO),该算子在海上工业中用于预测大型结构的线性波浪诱导载荷。它基于频谱方法,需要与上游流速测量同步获取涡轮参数(例如扭矩,推力,功率或根叶片力)。在证明这两个信号之间的因果关系的频率范围内,使用传入速度的交叉谱密度与谱密度之比建立传递函数。利用相干函数验证了线性度,该函数仅在最低频率下显示了涡轮功率的有效性。然后使用该传递函数重建功率波动,并将其与记录的具有测深产生湍流的特定流动条件的功率波动进行比较。结果表明,重建过程依赖于测速点的准确位置。这一点必须与预期的涡轮机位置完全对应,即需要处理涡轮机响应的位置。考虑到其局限性,该方法可用于预测极端事件对涡轮结构的负荷以及湍流非定常特性对应的性能变化,以更好地进行网格整合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Marine Energy Journal
International Marine Energy Journal Engineering-Ocean Engineering
CiteScore
1.70
自引率
0.00%
发文量
24
审稿时长
12 weeks
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