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Experimental Analysis of a 20° Twist Helical Savonius Rotor at Different Overlap Conditions

机译:不同重叠条件下20°扭转螺旋革使转子的实验分析

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摘要

Wind power is a major source of sustainable energy and can be harvested using both horizontal and vertical axis wind turbines. Vertical axis wind turbines (VAWTs) accrue more popularity due to its self starting characteristics and Omni directional in nature. Out of which Savonius rotor is the most popular drag-based VAWT which is having lower efficiencies but having good self starting characteristics. In order to improve the performance, helix in the tip of the blade is targeted which reduces the negative torque coefficient of the rotor thereby could improve the performance of the rotor. Therefore, in this paper the power coefficients of a two-bucket helical Savonius rotor at different overlap ratios (from 0.0% to 19.76%) with helix twist angle of 20° are investigated experimentally. The investigations mainly concentrate to find out the optimum overlap ratio which is responsible for generation of maximum aerodynamic power. It is seen from the results that the power coefficient of the rotor increases with the increase in overlap ratio up to a certain limit, and further increase of the same decreases the power coefficients. The maximum power coefficient Cp of 0.289 is obtained at an optimum overlap ratio of 12.76%.
机译:风力是可持续能源的主要来源,可以使用水平和垂直轴风力涡轮机收获。由于其自身启动特性和全部定向,垂直轴风力涡轮机(VAWTS)累积的普及更受欢迎。萨米乌斯转子是最受欢迎的基于拖曳的VAWT,具有较低的效率,但具有良好的自我启动特征。为了提高性能,刀片尖端的螺旋被瞄准,其降低了转子的负扭矩系数,从而可以提高转子的性能。因此,在本文中,在实验上研究了不同重叠比(0.0%至19.76%)以20°的不同重叠比率(0.0%至19.76%)的功率系数。调查主要集中起来找出最佳重叠比,这负责产生最大的空气动力。从结果的结果看出,转子的功率系数随着重叠比的增加而增加,直到一定限度,并且进一步增加的电力系数减小。以12.76%的最佳重叠比率获得0.289的最大功率系数Cp。

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