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A methodology for production and cost assessment of a farm of wave energy converters

机译:波浪能转换器场的生产和成本评估方法

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摘要

To generate a substantial amount of power, Wave Energy Converters (WECs) are arranged in several rows or in a 'farm'. Both the power production and cost of a farm are lay-out dependent.In this paper, the wave power redistribution in and around three farm lay-outs in a near shore North Sea wave climate, is assessed numerically using a time-dependent mild-slope equation model. The modelling of the wave power redistribution is an efficient tool to assess the power production of a farm. Further, for each lay-out an optimal (low cost) submarine cable network is designed. The methodology to assess the power production and cost of a farm of WECs is applied to the Wave Dragon Wave Energy Converter (WD-WEC). The WD-WEC is a floating offshore converter of the overtopping type, which captures the water volume of overtopped waves in a basin above mean sea level and produces power when the water drains back to the sea through hydro turbines.It is observed that the cable cost is relatively small compared to the cost of the WD-WECs. As a result, WD-WECs should be installed in a lay-out to increase power production rather than decrease cable cost, taking spatial and safety considerations into account. WD-WECs arranged in a single line produce the highest amount of power, but require an available sea area with a large width (51 km). Installing a single line of WD-WECs in front of a farm of wind turbines increases the time window for accessing the wind farm (applied to Horns Rev Ⅱ - significant wave height smaller than 1-2 m during 8 h at minimum) by 9-14%.
机译:为了产生大量的电能,波能转换器(WEC)被布置成几行或一个“农场”。农场的电力生产和成本均取决于布局。在本文中,使用时变温和的方法对北海岸近海浪气候中三个农场布局及其附近的波浪功率重新分配进行了数值评估。斜率方程模型。波浪能再分配的建模是评估农场发电量的有效工具。此外,对于每个布局,都设计了最佳的(低成本)海底电缆网络。评估WEC场的发电量和成本的方法已应用于Wave Dragon Wave能量转换器(WD-WEC)。 WD-WEC是一种浮顶式海上浮式变流器,可捕获平均海平面以上盆地中的浮顶波的水量,并在水通过水轮机排回海面时发电。与WD-WEC的成本相比,成本相对较小。因此,在考虑空间和安全因素的情况下,应将WD-WEC安装在布局中,以增加发电量而不是降低电缆成本。 WD-WEC布置在一条直线上产生的功率最大,但是需要宽阔的可用海域(51公里)。在风力涡轮机场的前面安装单行WD-WEC会增加访问风力场的时间窗口(适用于Horns RevⅡ-显着的波高至少在8小时内小于1-2 m)至少9- 14%。

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  • 来源
    《Renewable energy》 |2011年第12期|p.3402-3416|共15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;

    Aalborg University, Department of Civil Engineering, Sohngaardsholmsvej 57, DK-9000 Aalborg, Denmark;

    Aalborg University, Department of Civil Engineering, Sohngaardsholmsvej 57, DK-9000 Aalborg, Denmark;

    DONC Energy Power A/S, A.C. Meyers Vaenge 9, DK-2450 Copenhagen SV, Denmark;

    DONC Energy Power A/S, A.C. Meyers Vaenge 9, DK-2450 Copenhagen SV, Denmark;

    DONC Energy Power A/S, A.C. Meyers Vaenge 9, DK-2450 Copenhagen SV, Denmark;

    Ghent University, Department of Civil Engineering, 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

    power production; cost; farm; wave energy; wave dragon;

    机译:发电;成本;农场;波浪能;波浪龙;
  • 入库时间 2022-08-18 00:26:38

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