Turbulence structures and entrainment length scales in large offshore wind farms

IF 3.6 Q3 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Abdul Haseeb Syed, J. Mann, A. Platis, J. Bange
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引用次数: 4

Abstract

Abstract. The flow inside and around large offshore wind farms can range from smaller structures associated with the mechanical turbulence generated by wind turbines to larger structures indicative of the mesoscale flow. In this study, we explore the variation in turbulence structures and dominant scales of vertical entrainment above large offshore wind farms located in the North Sea, using data obtained from a research aircraft. The aircraft was flown upstream, downstream, and above wind farm clusters. Under neutrally stratified conditions, there is high ambient turbulence in the atmosphere and an elevated energy dissipation rate compared to stable conditions. The intensity of small-scale turbulence structures is increased above and downstream of the wind farm, and it prevails over mesoscale fluctuations. But in stable stratification, mesoscale flow structures are not only dominant upstream of the wind farm but also downstream. We observed that the vertical flux of horizontal momentum is the main source of energy recovery in large offshore wind farms, and it strongly depends on the magnitude of the length scales of the vertical wind velocity component. The dominant length scales of entrainment range from 20 to ∼60 m above the wind farm in all stratification strengths, and in the wake flow these scales range from 10 to ∼100 m only under near-neutral stratification. For strongly stable conditions, negligible vertical entrainment of momentum was observed even just 2 km downstream of large wind farms. We also observed that there is a significant lateral momentum flux above the offshore wind farms, especially under strongly stable conditions, which suggests that these wind farms do not satisfy the conditions of an “infinite wind farm”.
大型海上风电场的湍流结构和夹带长度尺度
摘要大型海上风电场内部和周围的流动范围从与风力涡轮机产生的机械湍流相关的较小结构到表明中尺度流动的较大结构。在这项研究中,我们利用一架研究飞机获得的数据,探索了位于北海的大型海上风电场上方湍流结构和垂直夹带的主要尺度的变化。飞机在风力发电场群的上游、下游和上方飞行。在中性分层条件下,与稳定条件相比,大气中存在较高的环境湍流和较高的能量耗散率。小尺度湍流结构的强度在风电场的上方和下游增加,并优于中尺度波动。但在稳定分层中,中尺度流结构不仅在风电场上游占主导地位,而且在下游也占主导地位。我们观察到,水平动量的垂直通量是大型海上风电场能量回收的主要来源,它强烈依赖于垂直风速分量的长度尺度的大小。在所有分层强度下,夹带的主要长度尺度在风电场以上20 ~ 60 m之间,而在尾流中,只有在近中性分层下,这些尺度在10 ~ 100 m之间。在非常稳定的条件下,即使在大型风电场下游仅2公里处,也观察到可以忽略不计的垂直动量夹带。我们还观察到,海上风电场上方存在显著的横向动量通量,特别是在强稳定条件下,这表明这些风电场不满足“无限风电场”的条件。
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来源期刊
Wind Energy Science
Wind Energy Science GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
6.90
自引率
27.50%
发文量
115
审稿时长
28 weeks
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