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Wind resource modelling in complex terrain using different mesoscale-microscale coupling techniques

机译:使用不同的中微尺度耦合技术在复杂地形中进行风资源建模

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摘要

Wind resource evaluation in two sites located in Portugal was performed using the mesoscale modelling system Weather Research and Forecasting (WRF) and the wind resource analysis tool commonly used within the wind power industry, the Wind Atlas Analysis and Application Program (WAsP) microscale model. Wind measurement campaigns were conducted in the selected sites, allowing for a comparison between in situ measurements and simulated wind, in terms of flow characteristics and energy yields estimates. Three different methodologies were tested, aiming to provide an overview of the benefits and limitations of these methodologies for wind resource estimation. In the first methodology the mesoscale model acts like "virtual" wind measuring stations, where wind data was computed by WRF for both sites and inserted directly as input in WAsP. In the second approach, the same procedure was followed but here the terrain influences induced by the mesoscale model low resolution terrain data were removed from the simulated wind data. In the third methodology, the simulated wind data is extracted at the top of the planetary boundary layer height for both sites, aiming to assess if the use of geostrophic winds (which, by definition, are not influenced by the local terrain) can bring any improvement in the models performance. The obtained results for the abovementioned methodologies were compared with those resulting from m situ measurements, in terms of mean wind speed, Weibull probability density function parameters and production estimates, considering the installation of one wind turbine in each site. Results showed that the second tested approach is the one that produces values closest to the measured ones, and fairly acceptable deviations were found using this coupling technique in terms of estimated annual production. However, mesoscale output should not be used directly in wind farm sitting projects, mainly due to the mesoscale model terrain data poor resolution. Instead, the use of mesoscale output in microscale models should be seen as a valid alternative to in situ data mainly for preliminary wind resource assessments, although the application of mesoscale and microscale coupling in areas with complex topography should be done with extreme caution.
机译:使用中尺度建模系统“天气研究与预报”(WRF)和风电行业中常用的风资源分析工具,即“风图集分析和应用程序”(WAsP)微型模型,对位于葡萄牙两个地点的风资源进行了评估。在选定的地点进行了测风运动,以便就流量特征和能量产量估算而言,就地测量和模拟风之间进行比较。测试了三种不同的方法,旨在概述这些方法在风资源估算中的优点和局限性。在第一种方法中,中尺度模型的作用类似于“虚拟”测风站,在该模型中,WRF计算了两个站点的风数据,并将其直接作为输入插入WAsP。在第二种方法中,遵循相同的步骤,但是此处从模拟风数据中删除了由中尺度模型低分辨率地形数据引起的地形影响。在第三种方法中,模拟风数据是在两个站点的行星边界层高度的顶部提取的,旨在评估使用地转风(根据定义,不受当地地形的影响)是否可以带来改善模型性能。考虑到在每个站点安装一台风力涡轮机,将上述方法获得的结果与现场测量的结果进行了比较,包括平均风速,威布尔概率密度函数参数和产量估算。结果表明,第二种测试方法是产生最接近所测值的方法,并且使用这种耦合技术在估计的年产量方面发现了相当可接受的偏差。但是,中尺度输出不应直接用于风电场选址项目中,这主要是由于中尺度模型地形数据的分辨率较差。相反,在中微尺度模型中使用中尺度输出应被视为主要用于初步风资源评估的现场数据的有效替代方法,尽管在具有复杂地形的地区中尺度和微尺度耦合的应用应格外谨慎。

著录项

  • 来源
    《Applied Energy》 |2013年第8期|493-504|共12页
  • 作者单位

    CESAM - Department of Physics, University of Aveiro, Campus Universitario de Santiago, 3810-/93 Aveiro, Portugal;

    CESAM - Department of Physics, University of Aveiro, Campus Universitario de Santiago, 3810-/93 Aveiro, Portugal;

    Institute Superior de Engenharia do Porto, Rua Dr. Antonio Bernardino de Almeida 341, 4200-072 Porto, Portugal,MEGAJOULE Inovacao, Rua Eng. Frederico Ulrich 2650, 4470-605 Moreira da Maia, Portugal;

    MEGAJOULE Inovacao, Rua Eng. Frederico Ulrich 2650, 4470-605 Moreira da Maia, Portugal;

  • 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

    Wind energy; Wind simulation; Mesoscale models; Microscale models; WRF; WAsP;

    机译:风能;风模拟中尺度模型;微型模型;WRF;黄蜂;

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