风能应用的致动器扇形模型:参数研究

IF 3.6 Q3 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY Wind Energy Science Pub Date : 2024-06-10 DOI:10.5194/wes-9-1305-2024
Mohammad Mehdi Mohammadi, H. Olivares-Espinosa, G. P. Navarro Diaz, S. Ivanell
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引用次数: 0

摘要

摘要本文研究了不同的推杆扇形模型实施替代方案,以及它们与推杆线结果的比较。本文考虑了速度采样方法、尖端/偏移校正和时间步长。在转子平面和尾流中,线型和扇形模型的结果一致。使用扇形模型可以比执行器线模型减少 75% 的计算时间,因为可以使用更大的时间步长进行模拟,而不会明显影响精度。结果表明,所提出的速度采样方法在不同顶端速度比的情况下产生的结果与线模型最为接近。此外,在修正径向载荷分布时,对扇形模型采用的基于涡流的涂抹修正法的误差值是所有方法中最小的。此外,考虑到计算时间的增加,与致动器圆盘/扇形模型所用的时间步长相比,减少时间步长并不具有优势。
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An actuator sector model for wind power applications: a parametric study
Abstract. This paper investigates different actuator sector model implementation alternatives and how they compare to actuator line results. The velocity sampling method, tip/smearing correction, and time step are considered. A good agreement is seen between the line and sector model in the rotor plane and the wake flow. Using the sector model, it was possible to reduce the computational time by 75 % compared to the actuator line model as it is possible to run the simulations with a larger time step without compromising the accuracy considerably. The results suggest that the proposed velocity sampling method produces the closest results to the line model with different tip speed ratios. Moreover, the vortex-based smearing correction applied to the sector model results in the lowest error values, among the considered methods, to correct the radial load distributions. Also, it is seen that reducing the time step compared to the one used for the actuator disc/sector does not provide an advantage considering the increased computational time.
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来源期刊
Wind Energy Science
Wind Energy Science GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
6.90
自引率
27.50%
发文量
115
审稿时长
28 weeks
期刊最新文献
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