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Wind Energy Potential at Elevated Hub Heights in the US Midwest Region

机译:美国中西部地区的枢纽高度升高的风能潜力

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摘要

The US Midwest successfully generates wind power at a hub height of 80-90 m and the use of tall towers can reduce the wind energy cost. However, the lack of reliable wind data and production estimates at elevated heights hamper this effort. In this paper, wind resources and annual energy production (AEP) are studied using wind data up to 200 m above ground to estimate and validate AEP as a function of hub height at multiple sites. The AEP results show that energy production can increase by about 10% when the hub height is increased to 100 m. It also suggests that the optimal elevated hub height for a given region is not constant. A suitable site-specific height is desirable to minimize the levelized cost of energy (LCOE). Wind information from the National Renewable Energy Laboratory Wind Integration National Dataset (WIND) Toolkit is used as an alternative for estimating AEPs at elevated hub heights. This approach produced somewhat conservative results, confirming its use for wind farm planning purposes when measured wind data are not available. (C) 2021 American Society of Civil Engineers.
机译:美国中西部成功地在80-90米的中心高度产生风力,使用高塔可以降低风能成本。然而,缺乏可靠的风数据和生产估计在升高的高度妨碍了这项努力。在本文中,使用高达200米的风数据研究了风力资源和年度能源生产(AEP),以估计和验证AEP作为多个站点的集线器高度的函数。 AEP结果表明,当集线器高度增加到100米时,能量产量可以增加约10%。它还表明给定区域的最佳升高的轮毂高度不是恒定的。合适的特异性特异性高度是理想的,以最小化能量(LCoE)的调用成本。来自国家可再生能源实验室风集成国家数据集(风)工具包的风信息用作估计HUB高度估算AEP的替代方案。这种方法产生了一些保守的结果,确认当测量的风数据时,确认其用于风电场规划目的。 (c)2021年美国土木工程师协会。

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