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February 5, 20260 citations

Aerodynamic design and analysis of horizontal-axis wind turbine blades

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ZQZhongyuan QiaoSKSuriani Binti Che Kar

Key Points

  • This research aims to improve the aerodynamic performance of horizontal-axis wind turbine blades.
  • Compared three types of horizontal-axis wind turbine blades
  • Analyzed the function and performance of winglets at blade tips
  • Evaluated lift-to-drag ratios of tapered swept-back and elliptical blades
  • Tapered swept-back blades and elliptical blades significantly improve lift-to-drag ratios
  • Winglets at blade tips reduce induced drag by mitigating wingtip vortices
  • Tapered swept-back blades offer a simpler manufacturing process with comparable performance to elliptical blades

Abstract

Blade design is a fundamental and critical aspect of wind turbine technology. Enhancing the aerodynamic performance of turbine blades remains a key research focus in the field of wind energy. This project, based on the current state of wind power technology in Europe, compares and analyses three different types of horizontal-axis wind turbine blades, with particular emphasis on the function and performance of winglets (or sharklets) installed at the blade tips. The findings indicate that both tapered swept-back blades and elliptical blades can significantly improve the lift-to-drag ratio. Furthermore, incorporating winglets at the blade tips helps to mitigate wingtip vortices, thereby reducing induced drag. Overall, tapered swept-back blades are better suited for widespread commercial application, offering comparable aerodynamic performance to elliptical blades while allowing for a simpler manufacturing process.

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Cite This Study

Qiao et al. (2025) studied this question.

synapsesocial.com/papers/6984345ff1d9ada3c1fb2605https://doi.org/10.1051/matecconf/202541307007/pdf
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