CFD modeling of Vertical Axis Wind Turbine Wake Interaction

IF 0.8 4区 工程技术 Q4 ENGINEERING, MECHANICAL Transactions of The Canadian Society for Mechanical Engineering Pub Date : 2023-04-14 DOI:10.1139/tcsme-2022-0149
B. Belabes, M. Paraschivoiu
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引用次数: 1

Abstract

Since wind turbines placed in wind farms need to minimize their footprint on the ground, the effects of the wake must be considered. Placement optimization, turbine spacing, and direction of rotation are known to affect the performance of vertical-axis wind turbines (VAWTs). However, rigorous numerical modeling methodologies that investigate the influence of these characteristics are lacking, especially in the case of large wind turbines. The goal of this study is to analyze turbine configurations that might enhance the power production of VAWT farms using 2-Dimensional CFD models based on the Star CCM+ package. The novelty of this work is to analyze wind farm configurations for very large turbines. This is important because large turbines are much more performant than small turbines and have a high value of the power coefficient. Results show that CFD simulations capture adequately the performance of wind turbines in farms with multiple VAWTs. In general, if a second rotor is spaced more than 10 turbine diameters downstream of the first rotor, the effect of the wake is less significant. Furthermore, a specific farm configuration with 5 VAWTs is investigated and shows a 20% increase in power output compared to the same number of turbines operating in isolation.
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垂直轴风力机尾迹相互作用CFD建模
由于放置在风电场中的风力涡轮机需要将其在地面上的足迹最小化,因此必须考虑尾流的影响。放置优化、涡轮机间距和旋转方向是影响垂直轴风力涡轮机性能的重要因素。然而,研究这些特性的影响的严格的数值模拟方法缺乏,特别是在大型风力涡轮机的情况下。本研究的目的是利用基于Star CCM+软件包的二维CFD模型,分析可能提高VAWT农场发电量的涡轮机配置。这项工作的新颖之处在于分析大型涡轮机的风电场配置。这一点很重要,因为大型涡轮机的性能比小型涡轮机高得多,而且功率系数也高。结果表明,CFD模拟充分捕捉了具有多个vawt的风力涡轮机的性能。一般来说,如果第二个转子在第一个转子下游的距离超过10个涡轮直径,尾迹的影响就不那么显著。此外,研究人员还对具有5个vawt的特定电场配置进行了研究,结果显示,与隔离运行的相同数量的涡轮机相比,输出功率增加了20%。
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来源期刊
CiteScore
2.30
自引率
0.00%
发文量
53
审稿时长
5 months
期刊介绍: Published since 1972, Transactions of the Canadian Society for Mechanical Engineering is a quarterly journal that publishes comprehensive research articles and notes in the broad field of mechanical engineering. New advances in energy systems, biomechanics, engineering analysis and design, environmental engineering, materials technology, advanced manufacturing, mechatronics, MEMS, nanotechnology, thermo-fluids engineering, and transportation systems are featured.
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