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首页> 外文期刊>International journal of sustainable energy >An onsite demonstration and validation of LiDAR technology for wind energy resource assessment
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An onsite demonstration and validation of LiDAR technology for wind energy resource assessment

机译:LIDAR技术对风能资源评估的现场演示与验证

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摘要

The investigation of wind resource at higher heights is very crucial in planning wind power project. Normally, this involves the installation of a high and costly meteorological mast with a cup anemometer and wind vanes. This investigation uses the new ground-based remote-sensing technique Light Detection and Ranging (LiDAR) to investigate the wind resource at higher heights. This paper describes the LiDAR technology principle and examines the potential of LiDAR measurement to estimate the wind resource at higher heights by conducting a measurement campaign at Tamil Nadu, India. The wind statistics were determined using the 10?min average time-series wind data monitored by ZephIR LiDAR. These include the Weibull parameters, daily mean wind speed, wind power density, wind energy density, vertical wind speed profile and capacity factor. The investigation reveals that the vertical wind speed profile measured from the LiDAR system has approximate closer values to the standard meteorological measurement.
机译:在较高高度处对风力资源调查对于规划风电项目至关重要。通常情况下,这涉及使用杯风速计和风叶片安装高且昂贵的气象桅杆。该研究采用新的地面遥感技术光检测和测距(LIDAR)来研究更高高度的风力资源。本文介绍了LIDAR技术原则,并通过在印度泰米尔纳德邦进行测量活动,研究激光雷达测量的潜力,以估算较高高度的风力资源。使用由Zephir Lidar监测的10·min平均时间序列风数据确定风统计。这些包括威布尔参数,每日平均风速,风力密度,风能密度,垂直风速曲线和容量因子。该研究表明,从激光雷达系统测量的垂直风速轮廓近似于标准气象测量的更接近。

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