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March 3, 2026Fluids0 citationsOpen Access

Numerical Study on the Aerodynamic Performance and Noise of Composite Bionic Airfoils

SSShunlong SuSXShenwei XinXYXuemin Ye

Key Points

  • CBA-O achieves a 12.7% increase in lift-to-drag ratio compared to the owl airfoil, indicating superior aerodynamic performance.
  • The aerodynamic evaluation shows that the composite bionic airfoils significantly reduce noise levels, with CBA-O outperforming NACA0018.
  • Observational analysis compares various airfoils' performance, linking bionic design features to enhanced aerodynamic properties.
  • Findings suggest that these innovations in airfoil design may lead to quieter and more efficient wind turbine operations.

Abstract

Bionic airfoils are an effective method to improve aerodynamic performance and reduce the noise of wind turbine blades. To explore the impact of the lower surface of bird wing airfoils on the aerodynamic performance and noise of blades, this study combines the upper surface of the NACA0018 airfoil with the lower surfaces of the teal, long-eared owl, and sparrowhawk (CBA-T, CBA-O, CBA-S) to create three new composite bionic airfoils (CBAs). The aerodynamic performance of these airfoils is evaluated, and the CBA-O airfoil is identified as having the best aerodynamic characteristics. A comparison of the noise and vortex structures of the CBA-O, owl wing airfoil, and NACA0018 is conducted, and the mechanisms behind the CBA-O airfoil performance improvement and noise reduction are explored. The results indicate that the CBAs enhance the aerodynamic performance of the airfoils. Before stall, the aerodynamic performance of the CBA-O improves the lift-to-drag ratio by 12.7% and 119.7% compared to the owl and NACA0018 airfoils, with its average SPL significantly lower than that of the NACA0018. The CBA-O has smaller vortex sizes at the trailing-edge, and the wake vortex develops more stably, effectively reducing both surface radiation noise and wake noise.

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Cite This Study

Su et al. (2026) studied this question.

synapsesocial.com/papers/69a75cabc6e9836116a25b94https://doi.org/10.3390/fluids11020036
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