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Mesoscale modeling of coastal low-level jets: implications for offshore wind resource estimation

机译:沿海低空急流的中尺度建模:对海上风资源估算的影响

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摘要

Detailed and reliable spatiotemporal characterizations of turbine hub height wind fields over coastal and offshore regions are becoming imperative for the global wind energy industry. Contemporary wind resource assessment frameworks incorporate diverse multiscale prognostic models (commonly known as mesoscale models) to dynamically downscale global-scale atmospheric fields to regional-scale (i.e., spatial and temporal resolutions of a few kilometers and a few minutes, respectively). These high-resolution model solutions aim at depicting the expected wind behavior (e.g., wind shear, wind veering and topographically induced flow accelerations) at a particular location. Coastal and offshore regions considered viable for wind power production are also known to possess complex atmospheric flow phenomena (including, but not limited to, coastal low-level jets (LLJs), internal boundary layers and land breeze-sea breeze circulations). Unfortunately, the capabilities of the new-generation mesoscale models in realistically capturing these diverse flow phenomena are not well documented in the literature. To partially fill this knowledge gap, in this paper, we have evaluated the performance of the Weather Research and Forecasting model, a state-of-the-art mesoscale model, in simulating a series of coastal LLJs. Using observational data sources we explore the importance of coastal LLJs for offshore wind resource estimation along with the capacity to which they can be numerically simulated. We observe model solutions to demonstrate strong sensitivities with respect to planetary boundary layer parameterization and initialization conditions. These sensitivities are found to be responsible for variability in AEP estimates by a factor of two.
机译:沿海和近海地区涡轮轮毂高度风场的详细,可靠的时空特征对于全球风能行业而言已成为当务之急。当代的风资源评估框架结合了各种多尺度的预测模型(通常称为中尺度模型),以将全球规模的大气场动态缩减为区域尺度(即分别为几公里和几分钟的时空分辨率)。这些高分辨率模型解决方案旨在描绘特定位置的预期风行为(例如,风切变,风向和地形诱发的水流加速度)。还已知被认为可用于风力发电的沿海和近海地区具有复杂的大气流动现象(包括但不限于沿海低空急流(LLJ),内部边界层和陆风-海风环流)。不幸的是,文献没有充分记录新一代中尺度模型在现实中捕获这些多样的流动现象的能力。为了部分弥补这一知识空白,在本文中,我们评估了“天气研究和预报”模型(一种最新的中尺度模型)在模拟一系列沿海低空急流中的性能。使用观测数据源,我们探索了沿海低空急流对于海上风资源估算的重要性以及可以对其进行数值模拟的能力。我们观察到模型解决方案,以证明对行星边界层参数化和初始化条件具有很强的敏感性。发现这些敏感性是造成AEP估算差异的两倍。

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