首页> 外文期刊>Journal of Physics: Conference Series >Inflow Turbulence and Leading Edge Roughness Effects on Laminar-Turbulent Transition on NACA 63-418 Airfoil
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Inflow Turbulence and Leading Edge Roughness Effects on Laminar-Turbulent Transition on NACA 63-418 Airfoil

机译:流入湍流和前缘粗糙度对NACA 63-418机翼的层流-湍流过渡的影响

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The surface imperfections and the inflow turbulence in real operational conditions can cause significant deviations from the predicted wind turbine aerodynamic performance and energy yield. In this study, particular emphasis was placed on the effect of these parameters on the laminar-turbulent transition on wind turbine blades. For this purpose, the DAN-AERO wind tunnel measurements, with high frequency microphones flush mounted on the both suction and pressure sides of the NACA 63-418 airfoil profile, were used. Typical operating condition Reynolds numbers, turbulence grid and boundary layer control devices on the surface were implemented. The results indicate a high dependency of the transition process on these parameters. The analyses show that the critical height of the leading edge roughness (LER) is to be met in order to have a bypass transition to turbulent flow at the angle of attacks, where the stagnation point is upstream of the LER location. The transition location moves closer to the leading edge with increasing Reynolds number when the roughness height is smaller than the critical height. Inflow turbulence is observed to have a larger effect on the transition location than the predicted numerical results.
机译:实际运行条件下的表面缺陷和流入湍流会导致与预测的风力涡轮机的空气动力性能和能量产生显着偏差。在这项研究中,特别强调了这些参数对风力涡轮机叶片层流湍流的影响。为此,使用DAN-AERO风洞测量,将高频麦克风齐平安装在NACA 63-418翼型轮廓的吸力和压力侧。在表面上实现了典型的工作条件雷诺数,湍流网格和边界层控制装置。结果表明过渡过程对这些参数的高度依赖性。分析表明,要满足前缘粗糙度(LER)的临界高度,以便在迎角处将湍流旁通到湍流,其中停滞点位于LER位置的上游。当粗糙度高度小于临界高度时,过渡位置会随着雷诺数的增加而更靠近前缘。观察到入流湍流对过渡位置的影响大于预测的数值结果。

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