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Wind tunnel investigation on the two- and three-blade Savonius rotor with central shaft at different gap ratio

机译:不同间隙比中心轴两叶片和三叶片Savonius转子的风洞研究

摘要

The Savonius rotor seems to be a promising wind turbine as it not only has the simplest and cheapest design but also is capable of yielding a higher annual energy output at low wind speed than the Darrieus rotor. Moreover, the Savonius rotor can also be used in ventilation systems, for local electricity production, as the start-up device for the Darrieus rotor, and small hydrokinetic turbines operating at low velocity. As a two-blade Savonius rotor suffers from negative average static torque coefficient (ACTS) at some azimuth angles and large-amplitude variation of ACTS, several studies have been conducted in recent years to improve ACTS. The three-blade rotor seems to be a potential candidate for ACTS improvement. However, less research has been done on three-blade rotors with a 180° arc and central shaft at different gap ratios (GRs) for different wind speeds. Therefore, the focus of the present work is to compare the two- and three-blade rotor in terms of ACTS and power coefficient (CP) through a wind tunnel experiment. Results show that the wind speed had a small effect on ACTS. However, negative azimuth angle range is narrowed and the negative azimuth angle range is moved upward as GR increased. Hence, the Savonius rotor with three blades could not only eliminate the negative range of ACTS but also smooth ACTS curves. In terms of the CP, the maximum power coefficient of the two-blade configuration was approximately 1.5 times that of the three-blade configuration. The 1/6 GR test data exhibited the attainment of super performance for all wind speed and blade number.
机译:Savonius转子似乎是有前途的风力涡轮机,因为它不仅具有最简单,最便宜的设计,而且还能够以比Darrieus转子低的风速产生更高的年发电量。此外,Savonius转子还可以用于通风系统中,用于本地电力生产,作为Darrieus转子和低速运行的小型流体动力涡轮机的启动装置。由于两叶片的Savonius转子在某些方位角处承受负平均静态转矩系数(ACTS),并且ACTS幅值较大,因此近年来进行了多项研究来改善ACTS。三叶片转子似乎是ACTS改进的潜在候选者。然而,针对具有不同风速的不同间隙比(GRs),具有180°弧度和中心轴的三叶片转子所做的研究很少。因此,本工作的重点是通过风洞实验比较两叶片和三叶片转子的ACTS和功率系数(CP)。结果表明,风速对ACTS的影响较小。但是,随着GR的增加,负方位角范围变窄,负方位角范围向上移动。因此,具有三个叶片的Savonius转子不仅可以消除ACTS的负范围,而且还可以平滑ACTS曲线。就CP而言,两叶片构造的最大功率系数约为三叶片构造的最大功率系数的1.5倍。 1/6 GR测试数据显示出在所有风速和叶片数下均具有出色的性能。

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