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Design and performance analysis of an airborne wind turbine for high-altitude energy harvesting

机译:高空能源收割机空气涡轮机的设计与性能分析

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摘要

The airborne wind turbine (AWT) offers the opportunity to be installed in challenging heights. For this purpose, the present study focuses on the aerodynamic design of an airborne rotor lifted to high altitude from the viewpoint of airborne technology. The rotor blade is modeled by imposing the elevated wind dataset while the outer shape is comprised of multi-profiles of thick airfoils. Numerical approaches of the BEM and RANS-CFD are employed for insight into performance analysis. The extracted results of the CFD data agreed well with the empirical computations. The induced effect of the diffuser on the rotor is demonstrated through an auxiliary shell structure. A range of 3D simulations varying the airloads are conducted to investigate the on-design and off-design behavior of the rotor. The power coefficient (C-p), effective forces and mass amplification are computed and discussed in terms of performance indicators. The design analysis reveals the significance of the chosen design specification to an operational height of 400 m. The noticeable finding confirms that the optimal C-p of the resulting rotor always occurs at rated conditions and equally valid for both configurations. Additionally, a power gain of 21.3% is obtained from the rotor equipped with the diffuser geometry. (C) 2021 Elsevier Ltd. All rights reserved.
机译:空中风力涡轮机(AWT)提供了安装在挑战高度上的机会。为此目的,本研究侧重于从机载技术的角度抬起到高海拔的空气动力学设计。转子叶片通过施加升高的风数据集来建模,而外形包括厚翼型的多型材。 BEM和RANS-CFD的数值方法用于洞察性能分析。 CFD数据的提取结果与经验计算很好。通过辅助壳结构证明了扩散器对转子上的诱导效果。进行一系列不同空降器的3D模拟,以研究转子的开启设计和非设计行为。在绩效指标方面计算和讨论了功率系数(C-P),有效力和征集。设计分析显示所选择的设计规范对400米的操作高度的重要性。显着的发现证实,所得转子的最佳C-P总是在额定条件下发生并且同样适用于这两种配置。另外,从配备有扩散器几何形状的转子获得21.3%的功率增益。 (c)2021 elestvier有限公司保留所有权利。

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