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Effects of blade shape and its corresponding moment of inertia on self- starting and power extraction performance of the novel bowl-shaped floating straight-bladed vertical axis wind turbine

机译:叶片形状及其相应的惯性矩对新型碗形漂浮式直叶片垂直轴风力发电机自启动和功率提取性能的影响

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In this paper, the effects of the blade shape and its corresponding moment of inertia on the performance of a novel bowl-shaped floating straight bladed vertical axis wind turbine (VAWT) have been investigated. A numerical method was developed and validated to accurately simulate the interaction between the wind and VAWT. Three inferential parameters, the starting time, mean power coefficient, and standard deviation of the aerodynamic force, were employed to evaluate the performance of the turbine with different blade shapes. Performance indicators including the self-starting capability, power extraction efficiency, and fatigue characteristics, were assessed. The results indicated that the VAWT with S-1046 blade had better overall performance as compared to the one with NACA0018 blade, where the reduced self-starting time, slight more or identical mean power coefficient, and minor standard deviation of F-t and F-n were observed. Further, the flow structure around the blade was also analyzed, it was found that at low wind speed (less than 6.0 m/s) separated vortex around the turbine is observed, whereas at high wind speed, attached vortex is observed. Fluctuation curves of power coefficient variation with tip speed ratio 'lambda' were also noted for the wind induced rotation of VAWT. At low wind speed, the highest power coefficient amplitude was obtained when the turbine was at maximum tip speed ratio, whereas at high wind speed, the highest power coefficient amplitude was obtained when the tip speed ratio of the turbine was slight less than the maximum value. Based on these results, it is strongly recommended to apply thinner symmetry (S-1046) blade for designing VAWT.
机译:本文研究了叶片形状及其相应的惯性矩对新型碗形浮式直叶片垂直轴风力涡轮机(VAWT)性能的影响。开发并验证了一种数值方法,可以准确模拟风与VAWT之间的相互作用。使用三个推断参数,即启动时间,平均功率系数和空气动力的标准偏差来评估具有不同叶片形状的涡轮机的性能。评估了包括自启动能力,功率提取效率和疲劳特性在内的性能指标。结果表明,与带有NACA0018刀片的VAWT相比,带有S-1046刀片的VAWT的整体性能更好,后者的自启动时间缩短了,平均功率系数略高或相同,并且Ft和Fn的标准偏差较小。 。此外,还对叶片周围的流动结构进行了分析,发现在低风速(小于6.0 m / s)时,观察到涡轮周围的涡流,而在高风速时,观察到了附着的涡流。对于风速引起的VAWT旋转,功率系数随尖端速度比“λ”变化的波动曲线也被记录下来。在低风速下,当涡轮处于最大叶尖速比时,功率系数幅值最大;而在高风速下,当涡轮的尖端速度比略小于最大值时,功率系数幅值最大。 。根据这些结果,强烈建议使用更薄的对称(S-1046)叶片设计VAWT。

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