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Aerodynamic Optimization Design of Airfoil Based on Directly Manipulated FFD Technique

机译:基于直接操纵FFD技术的翼型空气动力学优化设计

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The method of applying direct manipulated FFD (DFFD) technique into aerodynamic shape optimization has been proposed and researched. Due to the disadvantage of the original FFD method within which the geometrical manipulation is not direct and intuitive, the DFFD approach has been developed by solving each displacement of the FFD control points with some specified geometry points' movements, so that the deformation of the target geometry could be directly manipulated. Besides, it has been illustrated that by DFFD method a relatively small number of design variables together with high order FFD control frame could be accomplished. The study cases has shown that applying this method in aerodynamic shape optimization of airfoil for drag reduction is of good feasibility and result, and could be coupled with effective geometrical constraints like airfoil thickness.
机译:提出并研究了将直接操纵FFD(DFFD)技术应用于空气动力学优化的方法。由于原始FFD方法的缺点,在该方法内没有直接和直观,通过求解FFD控制点的每个位移以及一些指定的几何点的运动来开发DFFD方法,使目标的变形变形几何可以直接操纵。此外,已经示出了通过DFFD方法可以实现与高阶FFD控制帧一起的相对少量的设计变量。研究病例表明,在空气动力学形状中应用该方法的翼型的翼型的优化,用于减阻是良好的可行性和结果,并且可以与翼型厚度等有效的几何约束耦合。

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