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The effects of sinusoidal leading edge of turbine blades on the power coefficient of horizontal-axis wind turbine (HAWT)

机译:涡轮叶片正弦前缘对水平轴风力发电机功率系数的影响

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摘要

In order to improve the aerodynamic performance of horizontal-axis wind turbine (HAWT), a sinusoidal shape is applied to turbine blade. In this study, four types of modified blades were chosen based on variations in amplitude and wavelength of protuberance along the leading edge. Compared with the baseline model, the power coefficients (C-p) of HAWT with modified blades were improved, especially at low tip speed ratios. At low wind speed (V = 6 m/s), blades with short wavelength obtain significant improvement in C-p compared with the baseline model. As wind speed increases, this improvement decreases. In addition, turbine blade with large amplitude and long wavelength obtains better C-p values at higher wind speeds than lower ones, which have a great potential to be more superior at relatively higher wind speeds.
机译:为了提高水平轴风力涡轮机(HAWT)的空气动力学性能,正弦形状应用于涡轮机叶片。在这项研究中,根据沿前缘突起的振幅和波长的变化,选择了四种类型的改良叶片。与基线模型相比,改进型叶片的HAWT的功率系数(C-p)得到了改善,尤其是在低叶尖速比时。与基准模型相比,在低风速(V = 6 m / s)下,短波长叶片的C-p值得到了显着提高。随着风速增加,这种改善降低。另外,大振幅和长波长的涡轮叶片在较高的风速下比在较低的风速下获得更好的C-p值,在相对较高的风速下具有更大的潜力。

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