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Numerical investigations of the effects of different arrays on power extractions of horizontal axis tidal current turbines

机译:不同阵列对水平轴潮流涡轮机功率提取影响的数值研究

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摘要

As the tidal current industry grows, power extraction from tidal sites has received widespread attention. In this paper, a blade element actuator disk model that is coupled with the blade element method and a three-dimensional Navier-Stokes code is developed to analyse the relationship between power extraction and the layout of turbine arrays. First, a numerical model is constructed to simulate an isolated turbine and the model is validated using experimental data. Then, using this validated model, the power extraction of horizontal axis tidal current turbines using different tidal turbine arrays and rotation directions is predicted. The results of this study demonstrate that staggered grid array turbines can absorb more power from tidal flows than can rectilinear grid array turbines and that staggered grid array turbines are less affected by the rotation of upstream turbines. In addition, for staggered gird arrays, the relationships between power coefficients, lateral distance and longitudinal distance are discussed. The appropriate lateral distance is approximately 2.5 turbine diameters, whereas for the longitudinal distance, the largest value possible should be used. The relative power coefficient can achieve 3.74 when the longitudinal distance is 6 times the turbine diameter. To further increase the power extraction, this study suggests an improved staggered grid array layout. The relative power coefficient of the improved four-row turbine arrays is approximately 3-4% higher than that of the original arrays and will increase as the distance between the second-row and third-row increases. Considering only the first two rows of turbines, the total power extraction can be 11% higher than for an equivalent number of isolated turbines.
机译:随着潮流产业的发展,从潮流场所提取电力已受到广泛关注。本文提出了一种结合了叶片元件方法和三维Navier-Stokes代码的叶片元件致动器盘模型,以分析功率提取与涡轮阵列布局之间的关系。首先,构建一个数值模型来模拟隔离的涡轮机,并使用实验数据对该模型进行验证。然后,使用此经过验证的模型,预测使用不同潮汐涡轮机阵列和旋转方向的水平轴潮流涡轮机的功率提取。这项研究的结果表明,交错网格阵列涡轮机比直线网格阵列涡轮机可以从潮汐流中吸收更多的功率,并且交错网格阵列涡轮机受上游涡轮机旋转的影响较小。另外,对于交错网格阵列,讨论了功率系数,横向距离和纵向距离之间的关系。适当的横向距离约为涡轮直径的2.5,而对于纵向距离,应使用可能的最大值。当纵向距离是涡轮直径的6倍时,相对功率系数可以达到3.74。为了进一步增加功率提取,这项研究提出了一种改进的交错网格阵列布局。改进的四排涡轮机阵列的相对功率系数比原始阵列的相对功率系数高大约3-4%,并且将随着第二排和第三排之间的距离增加而增加。仅考虑前两排涡轮机,总功率提取可以比同等数量的隔离式涡轮机高11%。

著录项

  • 来源
    《Renewable energy》 |2013年第5期|180-186|共7页
  • 作者单位

    Key Laboratory of Thermo-Fluid Science and Engineering, Ministry of Education, School of Energy and Power Engineering, Xi'an ]iaotong University, Xi'an 710049, China;

    Key Laboratory of Thermo-Fluid Science and Engineering, Ministry of Education, School of Energy and Power Engineering, Xi'an ]iaotong University, Xi'an 710049, China;

    Key Laboratory of Thermo-Fluid Science and Engineering, Ministry of Education, School of Energy and Power Engineering, Xi'an ]iaotong University, Xi'an 710049, China;

    Key Laboratory of Thermo-Fluid Science and Engineering, Ministry of Education, School of Energy and Power Engineering, Xi'an ]iaotong University, Xi'an 710049, China;

  • 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

    tidal current turbine; power extraction; blade element theory; actuator disc model; numerical simulation;

    机译:潮流涡轮机;功率提取;叶片元素理论执行器盘型号;数值模拟;

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