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Offshore Wind Turbine Wake characteristics using Scanning Doppler Lidar

机译:使用扫描多普勒利达的海上风力涡轮机唤醒特性

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Within an offshore wind park, wind flow characteristics are quite complex and govern both the energy production and the structural wind turbine response. An experimental study focussed on assessing the spatial variability of winds near the German offshore wind energy platform FINO1 was conducted using multiple remote sensing devices. This study focuses on measuring the wind turbine wake characteristics, such as velocity deficit, the extent (length and width) of the wake and wake meandering under various atmospheric conditions using the data collected from a single scanning Doppler Lidar for several months in 2016. A new algorithm based on using a Gaussian model to measure the downwind wake characteristics is developed. The wind turbine downwind wake deficits compared well to previous models at far-wake regions, while at near-wake regions the models deviated due to different instruments & methodologies used in measuring the wake characteristics. It was also observed that the length of the Alpha Ventus wind turbine wake varied from 3 to 15 times the Rotor Diameter (RD), and the maximum velocity deficit varied from 55% to 75% of the free-stream wind speed, depending on mean wind speed and atmospheric stability. Detailed analysis of the Alpha Ventus wind turbine wake characteristics is presented.
机译:在海上风园内,风流特性非常复杂,并管理能源生产和结构风力涡轮机响应。使用多个遥感装置进行了一项专注于评估德国海上风能平台FINO1附近风的空间变异性的实验研究。本研究专注于测量风力涡轮机唤醒特性,例如在2016年从单扫描多普勒·莱达收集的数据收集的数据在各种大气条件下唤醒的速度缺陷等速度缺陷,范围(长度和宽度)。a开发了基于使用高斯模型来测量下行唤醒特性的新算法。风力涡轮机向下风唤醒缺陷与远唤醒区域的先前模型相比,在近唤醒区域,由于用于测量唤醒特性的不同仪器和方法,模型偏离。还观察到,Alpha Ventus风力涡轮机唤醒的长度从转子直径(RD)的3至15倍变化,并且最大速度缺口在自由流风速的55%至75%之间变化,这取决于平均值风速和大气稳定。介绍了对alpha pentus风力涡轮机唤醒特性的详细分析。

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