Liu Xiran, Zhao Dan, Oo Nay L
Department of Mechanical Engineering, Faculty of Engineering, University of Canterbury, Christchurch, New Zealand.
J R Soc N Z. 2024 Mar 7;55(4):977-1004. doi: 10.1080/03036758.2024.2323488. eCollection 2025.
As an alternative solution, wind power could be harnessed by designing and implementing small-scale wind turbines for distributed power generation. In this work, 3-dimensional time-domain numerical simulations, based on the Reynolds-Average Navier-Strokes (RANS) model, are conducted for two categories of small-scale wind turbines, i.e. drag force- (Savonius) and lift force-driven (Darrieus) ones, while placing them at a flat surface and a step height, respectively. The present results confirmed that placing a small-scale wind turbine at a step height can improve the maximum power output, respectively, approximately 219.2% for the Savonius wind turbine and 121.0% for the Darrieus wind turbine operating at their optimum stage; moreover, the corresponding peak power spectral density of the turbine torque is improved by 173.9% and 83.6%, respectively. In addition, the power generated from the wind flow could reduce the CO2 emission. It has been observed that the Savonius turbine could reduce the annual CO2 emission by 3,738.9-19,857.8 kg and that of Darrieus turbines by 4,919.6-26,128.8 kg. This study demonstrated the benefits of adopting forward facing steps to improve wind turbine performance in a typical urban environment.
作为一种替代解决方案,可以通过设计和安装用于分布式发电的小型风力涡轮机来利用风能。在这项工作中,基于雷诺平均纳维-斯托克斯(RANS)模型进行了三维时域数值模拟,针对两类小型风力涡轮机,即阻力驱动型(萨沃纽斯型)和升力驱动型(达里厄斯型),分别将它们放置在平坦表面和台阶高度处。目前的结果证实,将小型风力涡轮机放置在台阶高度处可以提高最大功率输出,在最佳运行阶段,萨沃纽斯风力涡轮机的最大功率输出分别提高约219.2%,达里厄斯风力涡轮机提高121.0%;此外,涡轮机扭矩的相应峰值功率谱密度分别提高了173.9%和83.6%。此外,风流产生的电力可以减少二氧化碳排放。据观察,萨沃纽斯涡轮机每年可减少3738.9 - 19857.8千克的二氧化碳排放,达里厄斯涡轮机可减少4919.6 - 26128.8千克。这项研究证明了在典型城市环境中采用前向台阶来提高风力涡轮机性能的益处。