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Computational modelling and experimental tank testing of the multi float WaveSub under regular wave forcing

机译:常规波浪力作用下多浮子WaveSub的计算建模与试验箱测试

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A submerged wave device generates energy from the relative motion of floating bodies. In WaveSub, three floats are joined to a reactor; each connected to a spring and generator. Electricity generated damps the orbital movements of the floats. The forces are non-linear and each float interacts with the others. Tuning to the wave climate is achieved by changing the line lengths, so there is a need to understand the performance trade-offs for a large number of configurations. This requires an efficient, large displacement, multidirectional, multi-body numerical scheme. Results from a 1/25 scale wave basin experiment are described. Here, we show that a time domain linear potential flow formulation (Nemoh, WEC-Sim) can match the tank testing provided that suitably tuned drag coefficients are employed. Inviscid linear potential models can match some wave device experiments; however, additional viscous terms generally provide better accuracy. Scale experiments are also prone to mechanical friction, and we estimate friction terms to improve the correlation further. The resulting error in mean power between numerical and physical models is approximately 10%. Predicted device movement shows a good match. Overall, drag terms in time domain wave energy modelling will improve simulation accuracy in wave renewable energy device design. (c) 2020 Elsevier Ltd. All rights reserved.
机译:潜水器从浮体的相对运动中产生能量。在WaveSub中,三个浮子连接到一个反应堆上。每个都连接到弹簧和发电机。产生的电力会抑制浮子的轨道运动。这些力是非线性的,每个浮子都相互影响。通过更改线路长度可以实现波浪气候的调整,因此需要了解大量配置的性能折衷。这就需要一种有效的大位移多向多体数值方案。描述了1/25比例波盆实验的结果。在这里,我们表明时域线性势能流公式(Nemoh,WEC-Sim)可以匹配储罐测试,前提是采用了适当调整的阻力系数。无粘性线性电势模型可以匹配某些波动装置实验;但是,其他粘性术语通常可以提供更好的准确性。规模实验也容易产生机械摩擦,我们估计摩擦项以进一步改善相关性。数值模型与物理模型之间的平均功率误差约为10%。预测的设备移动显示出很好的匹配。总体而言,时域波浪能建模中的阻力项将提高波浪可再生能源设备设计的仿真精度。 (c)2020 Elsevier Ltd.保留所有权利。

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