Performance improvement of a Vestas V52 850kW wind turbine by retrofitting passive flow control devices

M. Manolesos, Y. Celik, H. Ramsay, R. Karande, B. Wood, I. Dinwoodie, I. Masters, M. Harrold, G. Papadakis
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Abstract

This study presents the results of a collaborative effort between academia and industry aimed at further enhancing the benefits provided by Vortex Generators and Gurney Flaps. To achieve this objective, an integrated approach was employed, involving wind tunnel experiments, on-site measurements, and computational simulations to design devices tailored for an onshore (Vestas V52, 850 kW) turbine and assess their influence on turbine performance. Device selection was based on wind tunnel measurements, while their positioning on the blade was based on infrared thermography images from the field. A Reynolds Averaged Navier Stokes solver was used to predict the performance of the devices on both airfoil and blade level. The final assessment of the upgrade pack was based on SCADA data and Lidar measurements. The results show that an Annual Energy Production uplift of 5.77% is measured for this turbine.
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通过加装被动流量控制装置提高 Vestas V52 850 千瓦风力发电机的性能
本研究介绍了学术界和工业界的合作成果,旨在进一步提高涡流发生器和古尼襟翼的效益。为实现这一目标,我们采用了一种综合方法,包括风洞试验、现场测量和计算模拟,为陆上(Vestas V52,850 kW)涡轮机量身设计装置,并评估它们对涡轮机性能的影响。装置的选择基于风洞测量,而它们在叶片上的定位则基于现场的红外热成像图像。雷诺平均纳维-斯托克斯求解器用于预测设备在机翼和叶片上的性能。升级包的最终评估基于 SCADA 数据和激光雷达测量结果。结果显示,该涡轮机的年发电量提高了 5.77%。
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