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Potential order-of-magnitude enhancement of wind farm power density via counter-rotating vertical-axis wind turbine arrays

机译:通过反向旋转的垂直轴风力涡轮机阵列提高风电场功率密度的潜在数量级

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摘要

Modern wind farms comprised of horizontal-axis wind turbines (HAWTs) require significant land resources to separate each wind turbine from the adjacent turbine wakes. This aerodynamic constraint limits the amount of power that can be extracted from a given wind farm footprint. The resulting inefficiency of HAWT farms is currently compensated by using taller wind turbines to access greater wind resources at high altitudes, but this solution comes at the expense of higher engineering costs and greater visual, acoustic, radar, and environmental impacts. We investigated the use of counter-rotating vertical-axis wind turbines (VAWTs) in order to achieve higher power output per unit land area than existing wind farms consisting of HAWTs. Full-scale field tests of 10-m tall VAWTs in various counter-rotating configurations were conducted under natural wind conditions during summer 2010. Whereas modern wind farms consisting of HAWTs produce 2–3 W of power per square meter of land area, these field tests indicate that power densities an order of magnitude greater can potentially be achieved by arranging VAWTs in layouts that enable them to extract energy from adjacent wakes and from above the wind farm. Moreover, this improved performance does not require higher individual wind turbine efficiency, only closer wind turbine spacing and a sufficient vertical flux of turbulence kinetic energy from the atmospheric surface layer. The results suggest an alternative approach to wind farming that has the potential to concurrently reduce the cost, size, and environmental impacts of wind farms.
机译:由水平轴风力涡轮机(HAWT)组成的现代风电场需要大量土地资源才能将每个风力涡轮机与相邻的涡轮机尾流区分开。这种空气动力学约束限制了可以从给定的风电场占地面积中提取的功率量。当前通过使用更高的风力涡轮机在高海拔地区获取更大的风能资源来弥补HAWT农场效率低下的问题,但是这种解决方案的代价是工程成本更高,视觉,声学,雷达和环境影响更大。我们研究了反向旋转垂直轴风力涡轮机(VAWT)的使用,以实现比由HAWT组成的现有风电场更高的单位土地面积功率输出。在2010年夏季,在自然风条件下对各种反向旋转配置的10米高VAWT进行了全面测试。尽管由HAWT组成的现代风电场每平方米土地面积产生2-3 W功率,但这些场测试表明,通过将VAWT布置在布局中,使它们能够从相邻尾流和风电场上方提取能量,可以潜在地获得更大数量级的功率密度。而且,这种改进的性能不需要更高的单个风力涡轮机效率,仅需要更近的风力涡轮机间距和来自大气表层的足够的垂直湍流动能通量。结果表明,风电场的另一种方法有可能同时降低风电场的成本,规模和环境影响。

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  • 作者

    Dabiri John O.;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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