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Wind Energy Simulation Toolkit (WEST): A Wind Mapping System for Use by the WindEnergy Industry

机译:风能仿真工具包(WEST):风能行业使用的风图系统

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摘要

A state-of-art wind mapping system, the Wind Energy Simulation Toolkit (WEST), was developed in the Meteorological Service of Canada (MSC) for use by the wind energy industry. WEST is based on a statistical-dynamical downscaling approach, i.e. (i) a statistical analysis of climate data to determine the basic atmospheric states, and (ii) a dynamic adaptation of each basic state to high-resolution terrain and surface roughness by using mesoscale and microscale models. The approach has already been used by Frank and Landberg (1997), in their KAMM/WAsP method, to create a numerical wind atlas. The novel part of WEST is the fixed wind-speed interval in classification scheme and the integration of different modules (meso-/micro-scale models and statistical module) into a single toolkit in a more portable form. WEST was built for use by industries not having sophisticated computer facilities. WEST is applied to the Gaspé region of Canada. The mesoscale model MC2 (operated within WEST) is run at 5 km resolution, while the microscale model within WEST is at 200 m resolution. The simulation results are evaluated in comparison with tower observations at a height of 40 m above ground level. The mean of the 29 observed sets of wind data is 6.6 m/s. The mean absolute difference between the observed and simulated sets of wind data is 0.83 m/s with MC2 (meso-component of WEST) and 0.69 with 'full WEST' (with both meso- and micro- components). The correlation coefficient of the mean windspeeds between the simulations and observations for the 29 stations is improved from 0.5 with MC2 to 0.7 with WEST.
机译:加拿大气象局(MSC)开发了一种最新的风图系统,即​​风能模拟工具包(WEST),供风能行业使用。 WEST基于统计动态降尺度方法,即(i)对气候数据进行统计分析以确定基本的大气状态,以及(ii)通过使用中尺度对每种基本状态对高分辨率地形和表面粗糙度的动态适应和微型模型。 Frank和Landberg(1997)在其KAMM / WAsP方法中已经使用了该方法来创建数值风图集。 WEST的新颖之处在于分类方案中的固定风速间隔,以及将不同模块(中/微型模型和统计模块)以更便携的形式集成到单个工具包中。 WEST是为不具备先进计算机设施的行业而建造的。 WEST适用于加拿大的加斯佩地区。中尺度模型MC2(在WEST中运行)的分辨率为5 km,而WEST中的微型模型的分辨率为200 m。仿真结果与高出地面40 m处的塔观测结果进行了评估。 29组观测到的风数据的平均值为6.6 m / s。在MC2(WEST的中值分量)下,观测到的和模拟的风数据集之间的平均绝对差为0.83 m / s,在“ full WEST”(中,微分量值下)下为0.69。 29个站点的模拟和观测值之间的平均风速的相关系数从MC2的0.5提高到WEST的0.7。

著录项

  • 来源
    《Wind Engineering》 |2006年第1期|p. 15-33|共19页
  • 作者单位

    Recheche en Previson Numerique (RPN), Meteorological Research Branch (MRB), Environment Canada, 2121 TransCanada Highway, #500, Dorval (QC), H9P IJ3, Canada;

    Recheche en Previson Numerique (RPN), Meteorological Research Branch (MRB), Environment Canada, 2121 TransCanada Highway, #500, Dorval (QC), H9P IJ3, Canada;

    Recheche en Previson Numerique (RPN), Meteorological Research Branch (MRB), Environment Canada, 2121 TransCanada Highway, #500, Dorval (QC), H9P IJ3, Canada;

    Recheche en Previson Numerique (RPN), Meteorological Research Branch (MRB), Environment Canada, 2121 TransCanada Highway, #500, Dorval (QC), H9P IJ3, Canada;

    Recheche en Previson Numerique (RPN), Meteorological Research Branch (MRB), Environment Canada, 2121 TransCanada Highway, #500, Dorval (QC), H9P IJ3, Canada;

    Zephyr North, 4034 Mainway, Burlington (ON), L7M 4B9, Canada;

    JP Pinard Consulting, 703 Wheeler St., Whitehorse (YT), YIA 2P6, Canada;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 风能、风力机械;
  • 关键词

  • 入库时间 2022-08-18 00:26:10

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