首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >ANALYZING THE EFFECT OF SHAFT AND END-PLATES OF A NEWLY DEVELOPED ELLIPTICAL-BLADED SAVONIUS ROTOR FROM WIND TUNNEL TESTS
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ANALYZING THE EFFECT OF SHAFT AND END-PLATES OF A NEWLY DEVELOPED ELLIPTICAL-BLADED SAVONIUS ROTOR FROM WIND TUNNEL TESTS

机译:从风洞试验分析新开发的椭圆叶片萨沃尼转子的轴和端板效应

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In recent times, drag-based vertical-axis wind turbine rotors have gained increasing interests in offshore applications because of their performance potential and reliability. Their advantages like simplicity, easier manufacture and lower maintenance cost have attracted the researcher's attention toward improving their design further. However, this type of rotor is still suffering from lower efficiency than the lift-based Darrius and the horizontal-axis wind turbine rotors. A recently developed elliptical-bladed Savonius rotor has shown its potential to harvest wind energy more efficiently. However, the geometric parameters of this rotor such as aspect ratio, overlap ratio, number of blades, shaft and end plates, the aerodynamic parameters such as Reynolds number, lift and drag coefficients are needed to be optimized for further improvement of its performance. In the present investigation, the wind tunnel tests have been conducted to analyze the effect of shaft and end-plates of a newly developed elliptical-bladed vertical-axis Savonius wind turbine rotor. Experiments have been conducted over a range of tip speed ratios to find the torque and power coefficients of a two-bladed rotor system for two individual cases viz., the rotor with a shaft and the rotor with end-plates. In order to have a direct comparison, the experimental data are also obtained for the same rotor without the shaft and without the end-plates. The wind tunnel tests have demonstrated an improvement of power coefficient by 26.31% for the rotor with the end plates.
机译:近年来,基于阻力的垂直轴风力涡轮机转子因其性能潜力和可靠性而受到越来越多的关注。它们的优点如简单,易于制造和较低的维护成本吸引了研究人员的注意力,以进一步改进其设计。但是,这种类型的转子仍比起基于升力的Darrius和水平轴风力涡轮机转子的效率低。最近开发的椭圆叶片的Savonius转子显示了其更有效地收集风能的潜力。但是,该转子的几何参数(如长宽比,重叠比,叶片数,轴和端板),空气动力学参数(如雷诺数,升力和阻力系数)需要进行优化,以进一步改善其性能。在目前的研究中,风洞测试已经进行,以分析新开发的椭圆叶片垂直轴Savonius风力涡轮机转子的轴和端板的影响。已经在一定范围的叶尖速比上进行了实验,以找到针对两种情况的双叶片转子系统的转矩和功率系数,即带有轴的转子和带有端板的转子。为了进行直接比较,还获得了不带轴和不带端板的相同转子的实验数据。风洞测试表明,带有端板的转子的功率系数提高了26.31%。

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