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Simulation study of Savonius tandem blade wind turbine using an adjustable deflector

机译:使用可调偏转器的夏普座串联风力涡轮机的仿真研究

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The conventional Savonius wind turbine has two inverted cylindrical blades,it can indeed receive fluid impulses from all horizontal directions and produce a greater drag force than other wind turbines.The weakness of Savonius is the resistance in one blade side.Efforts to improve that has been done is to add a blade that serves to increase the local velocity of fluid flow to resist the resistance which is termed Savonius tandem blade(STB).This research was conducted to further reduce the resistance value of one side STB with the addition of an adjustable deflector.The purpose of this study is to obtain information on changes in the torque of the STB wind turbine on variations in the deflector angle and stream velocity.The research method used is numerical simulation using CFD software.A two-dimensional view of the rotor model using deflector was considered.The deflector angle varies start from 15 degrees with an increase also every 15 degrees until the torque decreased.The CFD simulation show there is a significant increase in torque with the addition of a deflector.Maximum torque is not achieved at one deflector angle value but is also influenced by stream velocity.At higher stream velocity there is a tendency to reach the maximum torque required larger deflector angle.Then at a certain point,the torque will decrease when the deflector angle is enlarged.
机译:传统的Savonius风力涡轮机具有两个倒圆柱形叶片,它确实可以从所有水平方向上接收流体脉冲,并产生比其他风力涡轮机更大的拖曳力。萨米乌斯的弱点是一个刀片侧的阻力。改善的弱势完成是添加一个刀片,用于增加流体流动的局部速度,以抵抗被称为Savonius串联刀片(STB)的电阻。这项研究进行了进一步降低了一个侧面STB的电阻值,增加了可调节的偏转器。本研究的目的是获取有关STB风力涡轮机的扭矩变化的信息,用于偏转器角度和流速的变化。使用的研究方法是使用CFD软件的数值模拟。转子的二维视图使用偏转器的模型被考虑。偏转角变化从15度开始,增加每15度,直到扭矩减小。CFD Simulati展示在扭矩增加了扭矩的显着增加,添加了偏转器。最大扭矩在一个偏转角值下也没有实现,但也受到流速的影响。较高的流速趋势达到最大扭矩达到更大的扭矩的趋势角度。然后在某个点处,当偏转角扩大时,扭矩将减小。

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