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Methods of reducing power fluctuations in wave energy parks

机译:减少波浪能发电场功率波动的方法

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摘要

One of the major challenges in constructing effective and economically viable wave energy parks is to reduce the large fluctuations in power output. In this paper, we study different methods of reducing the fluctuations and improve the output power quality. The parameters studied include the number of devices, the separating distance between units, the global and local geometries of the array, sea state and incoming wave direction, and the impact of including buoys of different radii in an array. Our results show that, e. g., the fluctuations as well as power per device decrease strictly with the number of interacting units, when the separating distance is kept constant. However, including more devices in a park with fixed area will not necessarily result in lowered power fluctuations. We also show that varying the distance between units affects the power fluctuations to a much larger extent than it affects the magnitude of the absorbed power. The fluctuations are slightly lower in more realistic, randomized geometries where the buoys tend to drift slightly off their mean positions, and significantly lower in semi-circular geometries as opposed to rectangular geometries. 
机译:建设有效且经济可行的波浪能园区的主要挑战之一是减少电力输出的大幅波动。在本文中,我们研究了减少波动并改善输出功率质量的不同方法。研究的参数包括设备数量,单元之间的分隔距离,阵列的整体和局部几何形状,海况和入射波方向,以及在阵列中包含不同半径的浮标的影响。我们的结果表明,例如,当分隔距离保持恒定时,波动和每台设备的功率随相互作用单元的数量而严格减小。但是,在具有固定面积的公园中包含更多设备并不一定会降低功率波动。我们还表明,改变单元之间的距离对功率波动的影响远大于对吸收功率大小的影响。在更现实的,随机的几何形状中,波动略小,其中浮标趋于稍微偏离其平均位置,而在半圆形几何形状中,与矩形几何形状相比,浮动明显较小。

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