Abstract
Wind turbines are a solution for sustainable energy, significantly reducing carbon emissions and fostering a circular economy for more cost-effective and cleaner power generation, in line with worldwide environmental aspirations. In this context, this research aims to explore a novel two-stage, twisted-blade micro-Vertical-Axis Wind Turbine ((Formula presented.) -VAWT)alternative inspired by the Savonius Rotor (SR). This investigation utilizes the (Formula presented.) SST turbulence model to explore the power coefficient ((Formula presented.)) and torque coefficient ((Formula presented.)), finding (Formula presented.) values ranging from 0.02 to 0.08 across the turbine by altering the free stream velocity (V). (Formula presented.) analysis further delves into four specific sections, highlighting areas of particular interest. These results are validated by examining velocity contours, pressure contours, and streamlines in four horizontal sections, demonstrating that the proposed turbine model exhibits minimal torque fluctuation. Moreover, the analysis of vertical wind streamlines illustrates very low interference with various wind turbine proposals, underscoring the turbine’s efficiency and potential for integration into diverse wind energy projects.
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Pérez-Terrazo, A., Moreno, M., Trejo-Zúñiga, I., & López, J. A. (2024). A Two-Stage Twisted Blade μ-Vertical Axis Wind Turbine: An Enhanced Savonius Rotor Design. Energies , 17(12). https://doi.org/10.3390/en17122835
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