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January 17, 20260 citationsOpen Access

An Integrated Study of Airfoil Aerodynamic Performance Enhancements: A Review

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DVDEV AMITKUMAR VORAAGANUSHKA GUPTATYTEJASWINI YADAV

Key Points

  • The central aim is to provide a comprehensive understanding of factors affecting airfoil aerodynamic performance.
  • Synthesized experimental and theoretical advancements in airfoils.
  • Examined wind tunnel testing and flow visualization techniques.
  • Analyzed computational fluid dynamics methodologies for airflow simulation.
  • Identified critical mechanisms influencing lift and drag forces.
  • Established a robust knowledge base for advancing airfoil design.
  • Highlighted the importance of airflow interactions and geometries in enhancing aerodynamic efficiency.

Abstract

The aerodynamic performance of airfoils plays a pivotal role in optimizing efficiency and functionality across various engineering applications. This review synthesizes experimental, theoretical, and computational advancements to provide a comprehensive understanding of the mechanisms influencing lift and drag forces. The study explores airflow interactions highlighting their with airfoil significance in geometries, enhancing aerodynamic efficiency. Experimental approaches, including wind tunnel testing and flow visualization, are critically examined alongside theoretical frameworks such as lifting line theory and thin airfoil theory. Furthermore, state-of-the-art Computational Fluid Dynamics (CFD) methodologies are analyzed for their capability to simulate airflow patterns and predict performance under diverse conditions. By integrating insights from these multidisciplinary perspectives, this review establishes a robust knowledge base for advancing airfoil design and performance optimization. These findings are crucial for fostering innovations in aerospace engineering and related fields.

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Cite This Study

VORA et al. (2026) studied this question.

synapsesocial.com/papers/696b2696d2a12237a9349df4https://doi.org/10.5281/zenodo.18260838
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