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A Simulation Study of Flow and Pressure Distribution Patterns in a Two Stage Three Bucket Savonius Vertical Axis Wind Turbine

机译:两级三级铲斗垂直轴风力涡轮机流动和压力分布图案的仿真研究

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Performance of Savonius vertical axis wind turbine can be increased by incorporating end plates, deflector plates, curtains, shielding, guide vanes etc in their designs. However, multi-staging of conventional VAWT rotors could be a viable proposition in terms of improvement of power output. Numerical analysis involving three bucket Savonius turbines are not available in the open domain. The objective of the present numerical investigation is to study the flow and pressure distribution patterns in the two-stage three bucket Savonius vertical axis wind turbine. The performance of SVAWT is based on the maximum difference in pressure between the upstream and downstream of the turbine. Velocity vector plots shows the energy transfer occurring from the fluid to the blade within the flow field in the upstream and downstream of the turbine. The trail of the wake left behind the SVAWT was observed in the downstream of the turbine. It is observed that eddies in large scale are present around the turbine flow field.
机译:通过将端板,偏转板,窗帘,屏蔽,屏蔽,屏蔽等在其设计中,可以增加夏普座垂直轴风力涡轮机的性能。然而,在改善功率输出方面,传统的VAWT转子的多阶段可能是一种可行的命题。开放式域中不可用涉及三个铲斗雄芯涡轮机的数值分析。本发明的数值调查的目的是研究两级三桶散杆垂直轴风力涡轮机的流量和压力分布图案。 SVAWT的性能基于涡轮机上游和下游之间的压力的最大差。速度矢量图示出了从涡轮机上游和下游的流场内从流体发生到叶片的能量传递。在涡轮机的下游观察到SVAWT后面左后面的尾迹。观察到涡轮流场周围存在大规模的漩涡。

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