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Using Large-Eddy Simulations to Define Spectral and Coherence Characteristics of the Hurricane Boundary Layer for Wind-Energy Applications

机译:使用大涡模拟来定义风能应用飓风边界层的光谱和相干特性

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Offshore wind-energy development is planned for regions where hurricanes commonly occur, such as the USA Atlantic Coast. Even the most robust wind-turbine design (IEC Class I) may be unable to withstand a Category-2 hurricane (hub-height wind speeds > 50 m s). Characteristics of the hurricane boundary layer that affect the structural integrity of turbines, especially in major hurricanes, are poorly understood, primarily due to a lack of adequate observations that span typical turbine heights ( 200 m above sea level). To provide these data, we use large-eddy simulations to produce wind profiles of an idealized Category-5 hurricane at high spatial (10 m) and temporal (0.1 s) resolution. By comparison with unique flight-level observations from a field project, we find that a relatively simple configuration of the Cloud Model I model accurately represents the properties of Hurricane Isabel (2003) in terms of mean wind speeds, wind-speed variances, and power spectra. Comparisons of power spectra and coherence curves derived from our hurricane simulations to those used in current turbine design standards suggest that adjustments to these standards may be needed to capture characteristics of turbulence seen within the simulated hurricane boundary layer. To enable improved design standards for wind turbines to withstand hurricanes, we suggest modifications to account for shifts in peak power to higher frequencies and greater spectral coherence at large separations.
机译:海上风能发展计划为飓风普遍出现的地区,如美国大西洋海岸。即使是最强大的风力涡轮机设计(IEC类I)也可能无法承受2类飓风(集线器高风速> 50米)。影响涡轮机结构完整性的飓风边界层的特征,特别是在主要飓风中,较差地理解,主要是由于缺乏跨越典型的涡轮机高度的足够的观察(& 200米上方海平面)。为了提供这些数据,我们使用大涡模拟在高空间(10米)和时间(0.1秒)分辨率下产生理想化的5类飓风的风谱。通过与现场项目的独特飞行级别观测相比,我们发现云模型I模型的相对简单配置准确地表示飓风Isabel(2003)的属性,而是在平均风速,风速差异和电力方面光谱。功率谱和相干曲线与当前涡轮机设计标准中使用的飓风模拟的比较表明,可能需要对这些标准的调整来捕获模拟飓风边界层内看到的湍流特性。为了使风力涡轮机能够承受飓风的改进设计标准,我们建议对峰值功率的转变进行修改,以更高的频率和大的分离频谱相干性。

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