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Wake effect assessment of a flap type wave energy converter farm under realistic environmental conditions by using a numerical coupling methodology

机译:利用数值耦合方法评估襟翼型波浪能转换器场在实际环境条件下的尾流效果

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Ocean Energy Europe has estimated that 100 GW of ocean energy capacity (wave and tidal) could be deployed in Europe by 2050. Along with the European targets it is expected that large farms of Wave Energy Converters (WECs) will be installed in the sea and, as part of the consenting process for their installation, it will be necessary to quantify their impact on the local environment. The objective of this study is to improve the assessment of WEC farms impact on the surrounding wave field (wake effect) through the use of a numerical coupling methodology. The methodology consists of a Boundary Element Method (BEM) solver to obtain the wave perturbation generated by the WEC farm for the near-field accounting for the wave-body interactions within the farm whilst a Wave Propagation Model (WPM) based on the mild-slope equations determines the wave transformation in the far-field. The near-field solution obtained from the BEM solver is described as an internal boundary condition in the WPM and then it is propagated throughout the WPM numerical domain. The internal boundary is described by imposing the solution of the surface elevation and velocity potential at the free-surface at each instant of time along a line surrounding the WEC farm.As a case study the methodology was applied to flap type WECs that are deployed in shallow water conditions. The validation of the technique was done first for a single flap and then for a farm of 5 flaps. Once validated, a realistic scenario was assessed by quantifying the impact of irregular sea states composed of long crested waves on a large WEC farm composed of 18 flaps and located on a real bathymetry. The irregular waves were obtained by superposing the regular wave field solutions for all wave frequencies represented in the considered sea state based on the linear water wave theory. Within the limits of this theory these simulations demonstrate the versatility of the methodology to accurately represent the impact of a WEC farm on the surrounding wave climate. The influence of the peak period and the spacing between flaps on the WEC farm wake effect was assessed as well.
机译:欧洲海洋能源公司估计,到2050年,欧洲将部署100吉瓦的海洋能源能力(波浪能和潮汐能)。与欧洲的目标一起,预计将在海中安装大型波浪能转换器(WEC)农场。 ,作为同意安装的过程的一部分,有必要量化它们对本地环境的影响。这项研究的目的是通过使用数值耦合方法来改进对WEC农场对周围波场的影响(苏醒效应)的评估。该方法由边界元法(BEM)求解器组成,用于获取WEC场产生的波扰动,以解决场内的波体相互作用,而波场传播模型(WPM)基于温和的-斜率方程确定了远场中的波变换。从BEM求解器获得的近场解在WPM中被描述为内部边界条件,然后在WPM数值域中传播。通过沿WEC农场周围的直线在每个时间点在自由表面上施加表面高程和速度势的解来描述内部边界。作为案例研究,该方法应用于部署在WEC场上的襟翼式WEC浅水条件。首先对单个皮瓣进行验证,然后对5个皮瓣的农场进行验证。一旦通过验证,就可以通过量化由长波组成的不规则海况对由18个襟翼组成并位于真实测深仪上的大型WEC农场的影响来评估现实情况。通过基于线性水波理论,将考虑海状态下代表的所有波频率的规则波场解叠加,得到不规则波。在此理论的范围内,这些模拟证明了该方法的多功能性,可以准确地代表WEC农场对周围波浪气候的影响。还评估了高峰期和襟翼间距对WEC场唤醒效应的影响。

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