Impact of wind farm wakes on flow structures in and around downstream wind farms

IF 2.8 Q2 MECHANICS Flow (Cambridge, England) Pub Date : 2022-08-08 DOI:10.1017/flo.2022.15
Anja Stieren, R. Stevens
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引用次数: 4

Abstract

Abstract We performed large-eddy simulations in a neutral atmospheric boundary layer to study the interaction between two identical wind farms with 72 turbines each. We demonstrate that the wind farm wake created by the upstream farm affects the entire flow in and around the downstream farm. The vertical entrainment fluxes above the downstream wind farm are strengthened, resulting in a faster wind farm wake recovery behind the downstream farm. These findings illustrate that interaction between extended wind farms affects flow structures beyond the wind farm scale. Furthermore, we demonstrate that wind farm wakes can reduce the power production of turbines throughout the downstream wind farms. We additionally observe that a staggered wind farm extracts more energy from the flow and thus creates a stronger wind farm wake than an aligned wind farm.
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风电场尾迹对下游风电场内部及周边流动结构的影响
摘要本文在中性大气边界层中进行了大涡模拟,研究了两个相同的72台风力发电场之间的相互作用。我们证明了上游风电场产生的风电场尾流会影响下游风电场内部和周围的整个流量。下游风电场上方的垂直夹带通量增强,导致下游风电场后面的风电场尾流恢复更快。这些发现表明,扩展风电场之间的相互作用影响了风电场规模以外的流动结构。此外,我们证明了风电场尾流可以降低整个下游风电场涡轮机的发电量。我们还观察到,交错的风电场从气流中提取更多的能量,从而产生比对齐的风电场更强的风电场尾流。
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CiteScore
2.40
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