用于主动式风电场控制的风力涡轮机偏航动态模型

Wind Energy Pub Date : 2023-12-18 DOI:10.1002/we.2884
Genevieve M. Starke, C. Meneveau, Jennifer King, D. Gayme
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引用次数: 0

摘要

本文提出了一种基于图形的动态偏航模型,用于预测轮毂高度速度和风电场功率对偏航变化的动态响应。该模型建立在以往工作的基础上,其中风机定义了图的节点,边代表风机之间的相互作用。与动态偏航模型相关的进展包括:对偏航情况下风力涡轮机风浪的变形进行了新的分析描述,以表示速度缺陷,并更准确地表示了风浪在涡轮机间的移动时间。根据风电场的实时数据,将模型与风电场流入量的时间和空间估计值相结合,提高了模型的准确性。利用大涡流模拟对模型进行了静态和动态验证。介绍了该模型的一个应用,它将该模型纳入了一个优化控制回路,以控制风电场的功率输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A dynamic model of wind turbine yaw for active farm control
This paper presents a graph‐based dynamic yaw model to predict the dynamic response of the hub‐height velocities and the power of a wind farm to a change in yaw. The model builds on previous work where the turbines define the nodes of the graph and the edges represent the interactions between turbines. Advances associated with the dynamic yaw model include a novel analytical description of the deformation of wind turbine wakes under yaw to represent the velocity deficits and a more accurate representation of the interturbine travel time of wakes. The accuracy of the model is improved by coupling it with time‐ and space‐dependent estimates of the wind farm inflow based on real‐time data from the wind farm. The model is validated both statically and dynamically using large‐eddy simulations. An application of the model is presented that incorporates the model into an optimal control loop to control the farm power output.
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