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首页> 外文期刊>International journal of sustainable energy >CFD study of some factors affecting performance of HAWT with swept blades
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CFD study of some factors affecting performance of HAWT with swept blades

机译:CFD研究影响HAWT与扫刀片性能的影响因素

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摘要

Most modern high-power wind turbines are horizontal axis type with straight twisted blades. Upgrading power and performance of these turbines is considered a challenge. A recent trend towards improving the horizontal axis wind turbine (HAWT) performance is to use swept blades or sweep twist adaptive blades. In the present work, the effect of blade curvature, sweep starting point and sweep direction on the wind turbine performance was investigated. The CFD simulation method was validated against available experimental data of a 0.9 m diameter HAWT. The wind turbine power and thrust coefficients at different tip speed ratios were calculated. Flow field, pressure distribution and local tangential and streamwise forces were also analysed. The results show that the downstream swept blade has the highest C_p value at design point as compared with the straight blade profile. However, the improvement in power coefficient is accompanied by a thrust increase. Results also show that the best performance is obtained when the starting blade sweeps at 25% of blade radius for different directions of sweep.
机译:大多数现代化的高功率风力涡轮机是具有直捻刀片的水平轴型。升级功率和这些涡轮机的性能被认为是一个挑战。最近改善水平轴风力涡轮机(HAWT)性能的趋势是使用扫刀片或扫描扭转自适应刀片。在本作工作中,研究了叶片曲率,扫描起点和扫描方向对风力涡轮机性能的影响。 CFD仿真方法针对0.9米直径的可用实验数据验证。计算出不同尖端速度比的风力涡轮机功率和推力系数。还分析了流场,压力分布和局部切向和流动力。结果表明,与直叶片轮廓相比,下游扫描刀片在设计点处具有最高的C_P值。然而,功率系数的改善伴随着推力增加。结果还表明,当启动刀片以25%的叶片半径扫描不同的扫描方向时,获得最佳性能。

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