PeWEC农场的多查询分析

Beatrice Battisti, Giuseppe Giorgi, Gael Verao Fernandez, Peter Troch
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引用次数: 1

摘要

波浪能转换器阵列的最大输出功率及其对周围地区的影响是波浪电场设计中必须考虑的两个基本的、严格相互关联的方面。在本研究中,对一组小型浮动装置评估了通常单独考虑的这两个因素的综合影响。采用边界元求解器Capytaine(近场解)和波传播模型MILDwave(远场解)之间的耦合模型进行了数值模拟。该农场位于Pantelleria岛海岸附近,由三个PeWECs组成,WECs是为地中海设计的。对比了不同距离下PeWEC电场的输出功率和扰动波场。此外,还实现了功率起飞(PTO),用于评估受控和非受控情况下远场效应的差异。结果表明,与单一装置相比,PeWEC场产生的尾迹更突出、更复杂。PTO的加入有助于进一步衰减PeWEC电场背风处的波场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiquery analysis of a PeWEC farm
The maximization of the power output of an array of wave energy converters (WECs) and its impact on the surrounding area are two fundamental, strictly interconnected, aspects that must be considered in the design of a wave farm. The effect of those two elements combined, usually considered separately, is evaluated, in this study, for a small farm of floating devices. The numerical simulations are performed using a coupled model between the BEM solver Capytaine (near-field solution) and the wave propagation model MILDwave (far-field solution). The farm is located off the coast of Pantelleria Island and is composed of three PeWECs, WECs designed for the Mediterranean Sea. The power output and the perturbed wave field around the PeWEC farm are compared to the single device, for different distances among the WECs. Moreover, a Power Take-Off (PTO) is implemented for assessing the difference in the far-field effects between a controlled and an uncontrolled case. Results show that the wake produced by the PeWEC farm is more prominent and more complex with respect to the single device. The inclusion of the PTO contributes to further attenuate the wave field in the lee of the PeWEC farm.
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