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Improving wind farm power output through deactivating selected wind turbines

机译:通过停用选定的风力涡轮机来提高风电场的功率输出

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Wind energy is becoming the fastest growing and most inexpensive renewable source, even surpassed natural gas. The environmental advantages coupled with the significant financial benefits have created a positive prognosis for wind energy continuously growing. However, the complexity and limited availability of wind resources create challenges that need to be addressed in order to continue improving wind energy harvesting. This paper developed a new concept to modify wind farm's layout by deactivating selected wind turbines to maximize its total power output under different wind conditions. Different wind conditions create different wake effects, while most wind farms cannot change their layouts to cope with the changing wind conditions. Through deactivating selected wind turbines to effectively reduce or eliminate some turbulent wakes, it is possible to improve a wind farm's total power output by creating a net gain for the entire wind farm. A new method was developed to identify the best combinations of deactivated wind turbines under different wind conditions to achieve maximum power output. Several case studies with real wind farms and real wind conditions were conducted together with sensitivity analysis. The promising results demonstrated the effectiveness of the new method and the new concept, named layout optimization through selective deactivation. Several factors were identified as influencing factors on the effectiveness of the new concept.
机译:风能正在成为增长最快,最廉价的可再生资源,甚至超过了天然气。环境优势和巨大的经济效益为风能的持续增长创造了积极的预兆。然而,风资源的复杂性和有限的可用性带来了挑战,需要继续应对以继续改善风能的收集。本文提出了一种新的概念,可以通过停用选定的风力涡轮机来改变风电场的布局,以在不同的风力条件下最大化其总功率输出。不同的风况会产生不同的唤醒效果,而大多数风电场无法更改其布局以应对不断变化的风况。通过停用选定的风力涡轮机以有效减少或消除一些湍流的尾流,可以通过为整个风力发电场创造净收益来改善风力发电场的总功率输出。开发了一种新方法来确定在不同风况下停用的风力涡轮机的最佳组合,以实现最大的功率输出。结合实际风电场和实际风况进行了一些案例研究,并进行了敏感性分析。令人鼓舞的结果证明了新方法和新概念(通过选择性停用激活的布局优化)的有效性。几个因素被确定为影响新概念有效性的因素。

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