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Gravity Waves and Wind-Farm Efficiency in Neutral and Stable Conditions

机译:重力波和风电场效率在中立和稳定条件下

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We use large-eddy simulations (LES) to investigate the impact of stable stratification on gravity-wave excitation and energy extraction in a large wind farm. To this end, the development of an equilibrium conventionally neutral boundary layer into a stable boundary layer over a period of 8 h is considered, using two different cooling rates. We find that turbulence decay has considerable influence on the energy extraction at the beginning of the boundary-layer transition, but afterwards, energy extraction is dominated by geometrical and jet effects induced by an inertial oscillation. It is further shown that the inertial oscillation enhances gravity-wave excitation. By comparing LES results with a simple one-dimensional model, we show that this is related to an interplay between wind-farm drag, variations in the Froude number and the dispersive effects of vertically-propagating gravity waves. We further find that the pressure gradients induced by gravity waves lead to significant upstream flow deceleration, reducing the average turbine output compared to a turbine in isolated operation. This leads us to the definition of a non-local wind-farm efficiency, next to a more standard wind-farm wake efficiency, and we show that both can be of the same order of magnitude. Finally, an energy flux analysis is performed to further elucidate the effect of gravity waves on the flow in the wind farm.
机译:我们使用大涡模拟(LES)来研究稳定分层对大型风电场重力波励磁和能量提取的影响。为此,考虑使用两种不同的冷却速率,考虑在8小时内将平衡常规中性边界层的开发成稳定的边界层。我们发现湍流衰减对边界层过渡开始时的能量提取具有相当大的影响,但之后,能量提取是由惯性振荡引起的几何和喷射效果的主导。进一步示出了惯性振荡增强了重力波激励。通过将LES结果与简单的一维模型进行比较,我们表明这与风电场拖曳,弗罗德数的变化以及垂直传播重力波的分散效果有关。我们进一步发现,由重力波引起的压力梯度导致显着的上游流动减速,与隔离操作中的涡轮机相比减少了平均涡轮输出。这导致我们对非本地风电场效率的定义,旁边是一个更标准的风电场唤醒效率,并且我们表明两者都可以是相同的数量级。最后,进行能量通量分析以进一步阐明重力波对风电场流动的影响。

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