The Impact of Variable Wind Shear Coefficients on Risk Reduction of Wind Energy Projects

K. Corscadden, A. Thomson, Behrang Yoonesi, J. McNutt
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引用次数: 9

Abstract

Estimation of wind speed at proposed hub heights is typically achieved using a wind shear exponent or wind shear coefficient (WSC), variation in wind speed as a function of height. The WSC is subject to temporal variation at low and high frequencies, ranging from diurnal and seasonal variations to disturbance caused by weather patterns; however, in many cases, it is assumed that the WSC remains constant. This assumption creates significant error in resource assessment, increasing uncertainty in projects and potentially significantly impacting the ability to control gird connected wind generators. This paper contributes to the body of knowledge relating to the evaluation and assessment of wind speed, with particular emphasis on the development of techniques to improve the accuracy of estimated wind speed above measurement height. It presents an evaluation of the use of a variable wind shear coefficient methodology based on a distribution of wind shear coefficients which have been implemented in real time. The results indicate that a VWSC provides a more accurate estimate of wind at hub height, ranging from 41% to 4% reduction in root mean squared error (RMSE) between predicted and actual wind speeds when using a variable wind shear coefficient at heights ranging from 33% to 100% above the highest actual wind measurement.
变风切变系数对风能项目风险降低的影响
在建议的轮毂高度估计风速通常使用风切变指数或风切变系数(WSC),风速变化作为高度的函数来实现。WSC在低频率和高频率上受到时间变化的影响,从日变化和季节变化到天气模式引起的干扰;然而,在许多情况下,假设WSC保持不变。这种假设在资源评估中造成了重大误差,增加了项目的不确定性,并可能严重影响控制并网风力发电机的能力。本文为风速的评价和评估提供了相关的知识体系,特别强调了提高测量高度以上估计风速准确性的技术发展。本文介绍了一种基于实时实现的风切变系数分布的可变风切变系数方法的使用评价。结果表明,VWSC提供了更准确的轮毂高度风速估计,当使用可变风切变系数时,在最高实际风速测量值之上的33%至100%范围内,预测风速与实际风速之间的均方根误差(RMSE)减少了41%至4%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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