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Numerical implementation and sensitivity analysis of a wave energy converter in a time-dependent mild-slope equation model

机译:时变缓坡方程模型中波能转换器的数值实现及灵敏度分析

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摘要

Several Wave Energy Converters (abbreviated as WECs) have intensively been studied and developed during the last decade and currently small farms of WECs are getting installed. WECs in a farm are partly absorbing, partly redistributing the incident wave power. Consequently, the power absorption of each individual WEC in a farm is affected by its neighbouring WECs. The knowledge of the wave climate around the WEC is needed to predict its performance in the farm. In this paper a technique is developed to implement a single and multiple WECs based on the overtopping principle in a time-dependent mild-slope equation model. So far, the mild-slope equations have been widely used to study wave transformations around coastal and offshore structures, such as breakwaters, piles of windmills and offshore platforms. First the limitations of the WEC implementation are discussed through a sensitivity analysis. Next the developed approach is applied to study the wave height reduction behind a single WEC and a farm. The wake behind an isolated WEC is investigated for uni- and multidirectional waves; it is observed that an increase of the directional spread leads to a faster wave redistribution behind the WEC. Further the wake in the lee of multiple WECs is calculated for two different farm lay-outs, i.e. an aligned grid and a staggered grid, by adapting the performance of each WEC to its incident wave power. The evolved technique is a fast tool to find the optimal lay-out of WECs in a farm and to study the possible influence on surrounding activities in the sea.
机译:在过去的十年中,已经对多种波浪能转换器(简称为WEC)进行了深入研究和开发,目前正在安装小型WEC农场。场中的WEC部分吸收,部分重新分配入射波功率。因此,场中每个单独的WEC的功率吸收都会受到其相邻WEC的影响。需要了解WEC周围海浪气候的知识,才能预测其在农场中的性能。在本文中,开发了一种技术,该技术可以在与时间有关的缓坡方程模型中基于超载原理来实现单个和多个WEC。迄今为止,缓坡方程已被广泛用于研究沿海和近海结构(如防波堤,风车桩和近海平台)周围的波浪转换。首先,通过敏感性分析讨论了WEC实施的局限性。接下来,将采用已开发的方法来研究单个WEC和一个农场后的波高降低。研究了隔离式WEC背后的尾波是否存在单向和多向波。可以观察到,方向扩展的增加导致波在WEC后面更快地重新分布。此外,通过使每个WEC的性能适应其入射波功率,针对两个不同的农场布局(即,对齐的网格和交错的网格)计算了多个WEC的余风。进化的技术是一种快速的工具,可以找到农场中WEC的最佳布局,并研究对海洋中周围活动的可能影响。

著录项

  • 来源
    《Coastal engineering》 |2010年第5期|p.471-492|共22页
  • 作者单位

    Ghent University, Department of Civil Engineering, Technologiepark 904, B-9052 Zwijnaarde, Belgium;

    Ghent University, Department of Civil Engineering, Technologiepark 904, B-9052 Zwijnaarde, Belgium;

    Ghent University, Department of Civil Engineering, Technologiepark 904, B-9052 Zwijnaarde, Belgium;

    Ghent University, Maritime Technology Division, Technologiepark 904, B-9052 Zwijnaarde, Belgium;

    Ghent University, Department of Civil Engineering, Technologiepark 904, B-9052 Zwijnaarde, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    numerical model; mild-slope equations; wave energy; wake; farm;

    机译:数值模型缓坡方程;波能;苏醒;农场;

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