翼型对翼型性能影响的比较研究

Hocine Hares, Ghazali Mebarki
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引用次数: 0

摘要

飞机的气动性能主要取决于升力、阻力和升阻比。飞机机翼的几何形状被认为对这种空气动力学性能至关重要。本研究的目的是确定最有效的机翼形状,提高翼型的空气动力学性能。为此目的,在NACA 4412翼型的矩形和锥形翼型之间进行了数值比较研究,用于亚音速区域的大范围攻角。采用基于有限体积法的ANSYS Fluent软件对控制方程进行了数值求解。湍流模型选择了Realizable k-ε模型。根据文献中的实验结果,对数值计算过程进行了验证。结果表明,在所有迎角下,锥形机翼的升力系数都比矩形机翼有所提高,阻力系数有所降低。然而,锥形的升阻系数比获得了增益。
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Influence of Wing Shape on Airfoil Performance: a Comparative Study
The aerodynamic performance of an aircraft mainly depends on the lift force, drag force, and the lift to drag ratio. The geometric shapes of aircraft wings are considered crucial for this aerodynamic performance. The purpose of this study is to determine the most efficient wing shape that improves the aerodynamic performance of the airfoil. For that purpose, a numerical comparative study was carried out between the rectangular and tapered wing shapes of the NACA 4412 airfoil for a wide range of angles of attack in the subsonic regime. ANSYS Fluent software, based on the finite volume method, was used for the numerical resolution of the governing equations. The Realizable k-ε model was chosen for the turbulence modeling. The numerical procedure was validated based on experimental results obtained from the literature. The results show an improvement in the lift coefficient and a reduction in the drag coefficient of the Tapered shape compared to the rectangular shape at all angles of attack. However, a gain was achieved in the lift-to-drag coefficient ratio of the Tapered shape.
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来源期刊
WSEAS Transactions on Fluid Mechanics
WSEAS Transactions on Fluid Mechanics Engineering-Computational Mechanics
CiteScore
1.50
自引率
0.00%
发文量
20
期刊介绍: WSEAS Transactions on Fluid Mechanics publishes original research papers relating to the studying of fluids. We aim to bring important work to a wide international audience and therefore only publish papers of exceptional scientific value that advance our understanding of this particular area. The research presented must transcend the limits of case studies, while both experimental and theoretical studies are accepted. It is a multi-disciplinary journal and therefore its content mirrors the diverse interests and approaches of scholars involved with multiphase flow, boundary layer flow, material properties, wave modelling and related areas. We also welcome scholarly contributions from officials with government agencies, international agencies, and non-governmental organizations.
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