首页> 外文期刊>Journal of Applied Meteorology and Climatology >Spatial Variability of Winds and HRRR-NCEP Model Error Statistics at Three Doppler-Lidar Sites in the Wind-Energy Generation Region of the Columbia River Basin
【24h】

Spatial Variability of Winds and HRRR-NCEP Model Error Statistics at Three Doppler-Lidar Sites in the Wind-Energy Generation Region of the Columbia River Basin

机译:哥伦比亚河流域风能发电区域三个多普勒 - 激光遗址的风速变异和HRRR-NCEP模型错误统计

获取原文
获取原文并翻译 | 示例
           

摘要

Annually and seasonally averaged wind profiles from three Doppler lidars were obtained from sites in the Columbia River basin of east-central Oregon and Washington, a major region of wind-energy production, for the Second Wind Forecast Improvement Project (WFIP2) experiment. The profile data are used to quantify the spatial variability of wind flows in this area of complex terrain, to assess the HRRR-NCEP model's ability to capture spatial and temporal variability of wind profiles, and to evaluate model errors. Annually averaged measured wind speed differences over the 70-km extent of the lidar measurements reached 1 m s(-1) within the wind-turbine rotor layer, and 2 m s(-1) for 200-500 m AGL. Stronger wind speeds in the lowest 500 m occurred at sites higher in elevation, farther from the river, and farther west-closer to the Cascade Mountain barrier. Validating against the lidar data, the HRRR model underestimated strong wind speeds (>12 m s(-1)) and, consequently, their frequency of occurrence, especially at the two lowest-elevation sites, producing annual low biases in rotor-layer wind speed of 0.5 m s(-1). The RMSE between measured and modeled winds at all sites was about 3 m s(-1) and did not degrade significantly with forecast lead time. The nature of the model errors was different for different seasons. Moreover, although the three sites were located in the same basin terrain, the nature of the model errors was different at each site. Thus, if only one of the sites had been instrumented, different conclusions would have been drawn as to the major sources of model error, depending on where the measurements were made.
机译:每年和季节性平均的风廓然来自三普勒·林德尔的风廓,是从俄勒冈州东部和华盛顿的一个主要区域的一个大型风能生产区域的哥伦比亚河流域的地点获得,用于第二种风预测改善项目(WFIP2)实验。配置文件数据用于量化复杂地形区域中风流的空间变异,以评估HRRR-NCEP模型捕获风谱的空间和时间变异性的能力,并评估模型误差。每年在潮汐式测量的70 km范围内测量的风速差异在挡风涡轮机转子层内达到1 m s(-1),并且2 m s(-1)为200-500m%。最低500米的较强风速强大的风速,距离河流更高,距离河流越远,越来越远。针对LIDAR数据验证,HRRR模型低估了强风速(> 12ms(-1)),因此它们的发生频率,尤其是在两个最低升高网站上,在转子层风速产生年度低偏差0.5 ms(-1)。在所有地点的测量和建模风之间的RMSE约为3米S(-1),并且对预测的提前期没有显着降低。模型错误的性质对于不同的季节不同。此外,虽然三个地点位于同一盆地地形中,但在每个部位的模型误差的性质不同。因此,如果只有其中一个网站被录音,则根据进行测量的位置,将绘制不同的结论,这取决于模型误差的主要来源。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号