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Computational analysis to enhance the compressible flow over an aerofoil surface

机译:计算分析以增强空气表面上的可压缩流动

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摘要

Purpose Since the inception of aerospace engineering, reducing drag is of eternal importance. Over the years, researchers have been trying to improve the aerodynamics of National Advisory Committee for Aeronautics (NACA) aerofoils in many ways. It is proved that smooth-surfaced NACA 0012 aerofoil produces more drag in compressible flow. Recent research on shark-skin pattern warrants a feasible solution to many fluid-engineering problems. Several attempts were made by many researchers to implement the idea of shark skin in the form of coatings, texture and more. However, those ideas are at greater risk when it comes to wing maintenance. The purpose of this paper is to implement a relatively larger biomimetic pattern which would make way for easy maintenance of patterned wings with improved performance. Design/methodology/approach In this paper, two biomimetic aerofoils are designed by optimizing the surface pattern of shark skin and are tested at different angles of attack in the computational flow domain. Findings The results of the biomimetic aerofoils prove that viscous and total drag can be reduced up to 33.08% and 3.68%, respectively, at high subsonic speed when validated against a NACA 0012 aerofoil. With the ample effectiveness of patched shark-skin pattern, biomimetic aerofoil generates as high as 10.42% lift than NACA 0012. Originality/value In this study, a feasible shark-skin pattern is constructed for NACA 0012 in a transonic flow regime. Computational results achieved using the theoretical model agree with experimental data.
机译:目的自初始以来,航空航天工程,减少阻力是永恒的重要性。多年来,研究人员一直在努力改善国家航空(NACA)航空仪器营运委员会的空气动力学在许多方面。事实证明,光滑表面的NACA 0012机架在可压缩流动中产生更多拖拽。最近关于鲨鱼皮纹模式的研究可行为许多流体工程问题的可行解决方案。许多研究人员在涂料,纹理等形式实现了几次尝试。然而,当涉及机翼维护时,这些想法处于更大的风险。本文的目的是实现一种相对较大的仿生模式,这将使能够改善性能的图案翅膀来使易于维护。在本文中设计/方法/方法,通过优化鲨鱼皮的表面图案来设计两种仿生翼型,并在计算流动域中的不同攻角测试。结果发现效力翼型的结果证明,当验证在NACA 0012机翼时,粘性和总阻力分别在高亚音速下分别降低33.08%和3.68%。随着斑纹鲨皮肤图案的充分有效性,仿生机场比NACA 0012高达10.42%的升力。本研究中的原创性/值,在跨音流动状态下为NACA 0012构建可行的鲨鱼皮图案。使用理论模型实现的计算结果与实验数据一致。

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