Free-Form Deformation Parameterization on the Aerodynamic Optimization of Morphing Trailing Edge

IF 12.2 1区 工程技术 Q1 MECHANICS Applied Mechanics Reviews Pub Date : 2023-02-28 DOI:10.3390/applmech4010017
M. Negahban, M. Bashir, R. Botez
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引用次数: 1

Abstract

Every aerodynamic optimization is proceeded by a parameterization of the studied aerial object, and due to its influence on the final optimization process, careful attention should be made in choosing the appropriate parameterization method. An aerodynamic optimization of a morphing trailing edge is performed using a free-form deformation parameterization technique with the purpose of examining the influence of the initial conditions of the parameterization on the optimization results, namely on the number of control points. High-fidelity gradient-based optimization using the discrete adjoint method is established by the coupling of OpenFOAM and Python within the DAFoam optimization framework. The results indicate that the number of control points has a considerable effect on the optimization process, in particular on the convergence, objective function value, and on the deformation feasibility.
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变形后缘气动优化中的自由变形参数化
每一次气动优化都是通过对研究对象进行参数化来进行的,由于参数化对最终优化过程的影响,因此在选择合适的参数化方法时应慎重考虑。采用自由变形参数化技术对变形后缘进行气动优化,目的是考察参数化初始条件对优化结果的影响,即对控制点数量的影响。在DAFoam优化框架内,通过OpenFOAM和Python的耦合,建立了基于离散伴随方法的高保真梯度优化。结果表明,控制点的数量对优化过程有相当大的影响,特别是对收敛性、目标函数值和变形可行性的影响。
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来源期刊
CiteScore
28.20
自引率
0.70%
发文量
13
审稿时长
>12 weeks
期刊介绍: Applied Mechanics Reviews (AMR) is an international review journal that serves as a premier venue for dissemination of material across all subdisciplines of applied mechanics and engineering science, including fluid and solid mechanics, heat transfer, dynamics and vibration, and applications.AMR provides an archival repository for state-of-the-art and retrospective survey articles and reviews of research areas and curricular developments. The journal invites commentary on research and education policy in different countries. The journal also invites original tutorial and educational material in applied mechanics targeting non-specialist audiences, including undergraduate and K-12 students.
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