Dynamic Wake Analysis of a Wind Turbine Providing Frequency Containment Reserve in High Wind Speeds

Narender Singh, J. D. De Kooning, L. Vandevelde
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Abstract

With the continuous evolution of the power system towards a more renewable energy based system, a natural and gradual transition will be to provide ancillary services by using renewable production units. Research has shown this to be feasible for wind farms by using efficient prediction and sophisticated control systems. In some parts of the world, strict grid codes are already being implemented that require wind farms to provide ancillary services. Moreover, the primary reserve market in Europe is moving towards shorter procurement periods, providing wind farms an opportunity to more efficiently optimise their resources based on short term forecasts. As a result of these developments, it is expected that more wind farms will provide ancillary services in the near future. The provision of Frequency Containment Reserve (FCR) requires a fast regulation of the turbine power based on the changes of the grid frequency. It is expected that this will have an impact on the wake behind the wind turbine. In wind parks with a high capacity density, such as the offshore wind parks in Belgium, it is important to investigate this impact as it can affect other neighbouring turbines. This paper investigates the dynamic behaviour of the wake generated by a wind turbine providing grid frequency support with FCR.
高风速下提供频率控制储备的风力机动态尾迹分析
随着电力系统不断向以可再生能源为基础的系统发展,使用可再生能源发电机组提供辅助服务将是一个自然而渐进的过渡。研究表明,通过使用有效的预测和复杂的控制系统,这对风力发电场是可行的。在世界上的一些地区,严格的电网规范已经开始实施,要求风力发电场提供辅助服务。此外,欧洲的主要储备市场正朝着缩短采购周期的方向发展,这为风电场提供了一个基于短期预测更有效地优化其资源的机会。由于这些发展,预计在不久的将来会有更多的风力发电场提供辅助服务。频率控制储备(FCR)的提供要求根据电网频率的变化对汽轮机功率进行快速调节。预计这将对风力涡轮机后面的尾流产生影响。在高容量密度的风电场,如比利时的海上风电场,调查这种影响是很重要的,因为它会影响到其他邻近的涡轮机。本文研究了用FCR提供电网频率支持的风力发电机产生的尾迹的动力学特性。
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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