{"title":"Impact of yaw misalignment on turbine loads in the presence of wind farm blockage","authors":"F. Bernardoni, M. Rotea, Stefano Leonardi","doi":"10.1002/we.2899","DOIUrl":null,"url":null,"abstract":"Wake steering is very effective in optimizing the power production of an array of turbines aligned with the wind direction. However, the wind farm behaves as a porous obstacle for the incoming flow, inducing a secondary flow in the lateral direction and a reduction of the upstream wind speed. This is normally referred to as blockage effect. Little is known on how the blockage and the secondary flow influence the loads on the turbines when an intentional yaw misalignment is applied to steer the wake. In this work, we assess the variation of the loads on a virtual 4 by 4 array of turbines with intentional yaw misalignment under different levels of turbulence intensity. We estimate the upstream distance at which the incoming wind is influenced by the wind farm, and we determine the wind farm blockage effect on the loads. In presence of low turbulence intensity in the incoming flow, the application of yaw misalignment was found to induce a significant increase of damage equivalent load (DEL) mainly in the most downstream row of turbines. We also found that the sign (positive or negative) of the yaw misalignment affects differently the dynamic loads and the DEL on the turbines. Thus, it is important to consider both the power production and the blade fatigue loads to evaluate the benefits of intentional yaw misalignment control especially in conditions with low turbulence intensity upstream of the wind farm.","PeriodicalId":506912,"journal":{"name":"Wind Energy","volume":"79 7","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-02-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Wind Energy","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1002/we.2899","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Wake steering is very effective in optimizing the power production of an array of turbines aligned with the wind direction. However, the wind farm behaves as a porous obstacle for the incoming flow, inducing a secondary flow in the lateral direction and a reduction of the upstream wind speed. This is normally referred to as blockage effect. Little is known on how the blockage and the secondary flow influence the loads on the turbines when an intentional yaw misalignment is applied to steer the wake. In this work, we assess the variation of the loads on a virtual 4 by 4 array of turbines with intentional yaw misalignment under different levels of turbulence intensity. We estimate the upstream distance at which the incoming wind is influenced by the wind farm, and we determine the wind farm blockage effect on the loads. In presence of low turbulence intensity in the incoming flow, the application of yaw misalignment was found to induce a significant increase of damage equivalent load (DEL) mainly in the most downstream row of turbines. We also found that the sign (positive or negative) of the yaw misalignment affects differently the dynamic loads and the DEL on the turbines. Thus, it is important to consider both the power production and the blade fatigue loads to evaluate the benefits of intentional yaw misalignment control especially in conditions with low turbulence intensity upstream of the wind farm.
随风转向对于优化风力涡轮机阵列的发电量非常有效。然而,风电场会对流入的气流造成多孔障碍,导致横向二次气流,降低上游风速。这通常被称为阻塞效应。当有意偏航错位以引导尾流时,阻塞和二次流如何影响涡轮机上的负载,目前所知甚少。在这项工作中,我们评估了在不同的湍流强度下,有意偏航错位的虚拟 4×4 水轮机阵列的载荷变化。我们估算了入风受风场影响的上游距离,并确定了风场对载荷的阻挡效应。我们发现,在入流湍流强度较低的情况下,偏航失调主要会导致最下游一排风机的损害当量载荷(DEL)显著增加。我们还发现,偏航错位的符号(正或负)对涡轮机的动载荷和 DEL 有不同的影响。因此,在评估有意偏航偏差控制的效益时,必须同时考虑发电量和叶片疲劳载荷,尤其是在风电场上游湍流强度较低的情况下。