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Analyses of Aerodynamic Characteristics and Boundary Layer Features of Airfoils at Low Reynolds Numbers and Moderate Turbulence Intensities

机译:低雷诺数翼型的空气动力学特性和边界层特征分析,中等湍流强度

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摘要

Research studies on low Reynolds number are continuously gaining technical interest aiming to contribute to the advancement of small aerial vehicles and wind turbines. Despite this, there are issues though concerning the sensitivity of the boundary layer on the airfoil surface due to their low-speed operating condition and the unstable environment where they are situated in. In order to enhance the performance of these machines, aerodynamic analysis of the airfoils employed for these kinds of applications needs to be essentially conducted. Therefore, this study aims to investigate the aerodynamic characteristics of several airfoils suitable for small-scale horizontal-axis wind turbines. Numerical results show that the effects of Reynolds number and turbulence intensity are somewhat similar in terms of lift-to-drag ratio and chordwise behavior of separation bubbles. Likewise, different structures exhibited by the flow on the airfoil upper surface were captured as functions of angle of attack, Reynolds number and turbulence intensity.
机译:低雷诺数的研究研究是不断获得的技术利益,旨在为小型航空车辆和风力涡轮机提供贡献。尽管如此,由于它们的低速操作条件和它们所在的不稳定环境,存在有关翼型表面上的边界层对翼型表面上的敏感性的问题。为了提高这些机器的性能,对这些机器的性能,对空气动力学分析需要基本上进行用于这些应用的翼型。因此,本研究旨在研究适用于小型水平轴风力涡轮机的几个翼型的空气动力学特性。数值结果表明,在分离气泡的升力比和弦曲线行为方面,雷诺数和湍流强度的效果有些类似。同样地,翼型上表面上的流动表现出的不同结构被捕获为攻角,雷诺数和湍流强度的函数。

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