2026· MATEC Web of Conferences· Vol 424, pp. 04013· 0 citations· 10 references
Abstract
In this paper, aerodynamic performance of three NACA airfoils, including NACA 2412, NACA 4412, and NACA 0012 are examined in two-dimensional CFD simulation to compare their aerodynamic performance. The current simulation is conducted at Re = 1.0 × 10
5
with turbulence model is able to predict adverse pressure gradient. The flow field is examined in a range of angle of attack between 0 and 16 degrees. Numerical results reveal that when Re is low, increasing camber not only increases both baseline lift and maximum lift coefficient, but also delay the stall. The symmetric airfoil NACA 0012 stalls at about 8°, while more cambered airfoil NACA 4412 delay stall at about 14°, obtain higher lift-to-drag ratio at peak and wider efficient operating range. The surface pressure, velocity and turbulent kinetic energy are further analyzed. It is found that when camber is increased, the adverse pressure gradient on upper surface is improved and transition point moves backward with angle of attack, which can suppress the large scale separation and vortex evolution.
To clarify the aerodynamic performance boundaries and applicable scenarios of the classic four-digit NACA airfoil under high-Reynolds-number conditions, this paper takes the NACA2412 cambered airfoil and the NACA0012 symmetrical airfoil as the research objects. Using the fluid mechanics numerical simulation method and...
Shao-Hao Yang· MATEC Web of Conferences· 0 citations
This article analyzes the aerodynamic characteristics of the NACA2412 and NACA23012 airfoils under low angles of attack. Computational fluid dynamics (CFD) numerical simulation is used to design geometric models and perform mesh generation, while the data were analyzed using a finite element method to calculate lift...
Ji-Xiang Huang· MATEC Web of Conferences· 0 citations
The paper discusses the behavior of two popular airfoils in the same conditions of flow, which are NACA 4412 and NACA 6412, at a Reynolds number of 1.85 ×10⁶, and uses computational fluid dynamics (CFD) as its primary instrument. The alteration in the flow field is considered also since the angle of attack is increased...
Jiawei Wang· MATEC Web of Conferences· 0 citations
This paper conducts two-dimensional numerical simulation experiments on NACA0012 and NACA2412 wing profiles, using a two-dimensional coordinate system to simulate wing profile data and generate structured grid computing domains and aircraft wing profile meshes centered around the wing profile. Computer simulation softw...
Wenhao Zhao· MATEC Web of Conferences· 0 citations
Airfoil geometry plays a significant role in lift generation and wing performance. Many of its effects
have already been theorized through thin-airfoil theory and tested in specific applications. However,
there have been few papers with a unified framework to examine the effects of different aspects of
airfoil geometry...
Patrick B. Louden· American Journal of Student...· 0 citations
In this study, the aerodynamic performance of National Advisory Committee for Aeronautics (NACA) 4415 airfoil equipped with two different aero-shaped vortex generators (AsVGs) was experimentally investigated. The tested VG designs were based on NACA 0015 (symmetric) and SD7080 (asymmetric) profiles and positioned at fo...
Gizem Irem Seyis, H. Tanürün, M. Seyhan· The Physics of Fluids· 0 citations
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