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A Methodology for the Reconstruction of 2D Horizontal Wind Fields of Wind Turbine Wakes Based on Dual-Doppler Lidar Measurements

机译:基于双多普勒激光雷达测量的二维风轮机水平风场重构方法

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Dual-Doppler lidar is a powerful remote sensing technique that can accurately measure horizontal wind speeds and enable the reconstruction of two-dimensional wind fields based on measurements from two separate lidars. Previous research has provided a framework of dual-Doppler algorithms for processing both radar and lidar measurements, but their application to wake measurements has not been addressed in detail yet. The objective of this paper is to reconstruct two-dimensional wind fields of wind turbine wakes and assess the performance of dual-Doppler lidar scanning strategies, using the newly developed Multiple-Lidar Wind Field Evaluation Algorithm (MuLiWEA). This processes non-synchronous dual-Doppler lidar measurements and solves the horizontal wind field with a set of linear equations, also considering the mass continuity equation. MuLiWEA was applied on simulated measurements of a simulated wind turbine wake, with two typical dual-Doppler lidar measurement scenarios. The results showed inaccuracies caused by the inhomogeneous spatial distribution of the measurements in all directions, related to the ground-based scanning of a wind field at wind turbine hub height. Additionally, MuLiWEA was applied on a real dual-Doppler lidar measurement scenario in the German offshore wind farm “alpha ventus”. It was concluded that the performance of both simulated and real lidar measurement scenarios in combination with MuLiWEA is promising. Although the accuracy of the reconstructed wind fields is compromised by the practical limitations of an offshore dual-Doppler lidar measurement setup, the performance shows sufficient accuracy to serve as a basis for 10 min average steady wake model validation.
机译:双多普勒激光雷达是一种强大的遥感技术,可以准确地测量水平风速,并基于两个独立激光雷达的测量结果,可以重建二维风场。先前的研究提供了一种用于处理雷达和激光雷达测量的双多普勒算法的框架,但是尚未详细介绍它们在唤醒测量中的应用。本文的目的是使用新开发的多激光雷达风场评估算法(MuLiWEA)重建风力涡轮机尾流的二维风场并评估双多普勒激光雷达扫描策略的性能。这将处理非同步双多普勒激光雷达测量,并使用一组线性方程式求解水平风场,同时还要考虑质量连续性方程式。 MuLiWEA被用于模拟风力涡轮机尾流的模拟测量,具有两种典型的双多普勒激光雷达测量方案。结果表明,由于各个方向上测量值的空间分布不均匀而导致的误差,这与风力涡轮机轮毂高度的风场的地面扫描有关。此外,MuLiWEA还应用于德国海上风电场“ alpha ventus”的实际双多普勒激光雷达测量方案中。结论是,结合MuLiWEA的模拟和真实激光雷达测量场景的性能都是有希望的。尽管海上双多普勒激光雷达测量设置的实际局限性限制了重建风场的精度,但该性能显示出足够的精度,可作为10分钟平均稳流模型验证的基础。

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