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Offshore wind farm wake recovery: Airborne measurements and its representation in engineering models

机译:海上风电场尾流恢复:机载测量及其在工程模型中的表示

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摘要

We present an analysis of wind measurements from a series of airborne campaigns conducted to sample the wakes from two North Sea wind farm clusters, with the aim of determining the dependence of the downstream wind speed recovery on the atmospheric stability. The consequences of the stability dependence of wake length on the expected annual energy yield of wind farms in the North Sea are assessed by an engineering model. Wakes are found to extend for significantly longer downstream distances (>50 km) in stable conditions than in neutral and unstable conditions ( <15 km). The parameters of one common engineering model are modified to reproduce the observed wake decay at downstream distances >30 km. More significant effects on the energy yield are expected for wind farms separated by distances <30 km, which is generally the case in the North Sea, but additional data would be required to validate the suggested parameter modifications within the engineering model. A case study is accordingly performed to show reductions in the farm efficiency downstream of a wind farm. These results emphasize not only the importance of understanding the impact of atmospheric stability on offshore wind farms but also the need to update the representation of wakes in current industry models to properly include wake-induced energy losses, especially in large offshore clusters.
机译:我们介绍了一系列空运活动对风的测量结果进行分析,以采样来自两个北海风电场群的尾流,目的是确定下游风速恢复对大气稳定性的依赖性。通过工程模型评估了尾迹长度的稳定性对北海风电场预期年发电量的影响。发现在稳定条件下,相比在中立和不稳定条件下(<15 km),尾波可延伸到更长的下游距离(> 50 km)。修改了一种通用工程模型的参数,以重现在下游距离> 30 km时观察到的尾迹衰减。对于距离小于30 km的风场,预计风能发电场将产生更大的影响,这在北海是常见的情况,但是在工程模型中需要更多数据来验证建议的参数修改。因此,进行了一个案例研究,以显示风电场下游的电厂效率降低。这些结果不仅强调了了解大气稳定性对海上风电场的影响的重要性,而且强调了更新当前行业模型中的尾流的表示法,以适当地包括尾流引起的能量损失的需求,尤其是在大型海上集群中。

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