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Weight Indexing for Wing-Shape Multi-Objective Optimization

机译:翼形多目标优化的权重索引

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摘要

A method for wing-shape optimization is presented, in which the wing outer shape is optimized not only for the best aerodynamic efficiency but also for the minimum structural weight. The so-called airfoil effective distance is used to capture the influence of the wing outer shape on the wing-box structural weight. The airfoil weight index is defined based on the airfoil effective distance. Increasing the airfoil weight index results in decreasing the structural weight. The weight indexing method is used for airfoil multi-objective optimization for minimizing the aerodynamic drag as well as maximizing the weight index. The Pareto front for the drag and weight is found, and the airfoils on the Pareto front are used as the basis airfoils for a three-dimensional wing-shape optimization. The same method is applied to optimize the outer shape of three-dimensional wings for two objective functions: minimizing the wing drag and minimizing the wing structural weight. A response surface methodology is used to reduce the computational costs of the wing-shape optimization. The influence of the material used in the wing-box structure on the wing optimum outer shape is also investigated. Three different composite layups together with a metal alloy are tested. The aircraft maximum takeoff weight and the aircraft direct operating cost are used as the design figures of merit to identify the best wings among the wings on the Pareto fronts. The results show that the optimum wing outer shape is significantly influenced by the material used in the wing-box structure.
机译:提出了一种用于机翼形状优化的方法,其中,不仅为了获得最佳的空气动力学效率而且还为了最小的结构重量来优化机翼外形。所谓的翼型有效距离用于捕获机翼外形对机翼箱结构重量的影响。翼型重量指数是根据翼型有效距离定义的。增加翼型重量指数导致减小结构重量。权重索引方法用于机翼多目标优化,以最小化空气阻力并最大化权重指数。找到阻力和重量的帕累托前翼,并将帕累托前翼上的翼型用作三维机翼形状优化的基础翼型。使用相同的方法来优化三维机翼的外形,以实现两个目标功能:最小化机翼阻力和最小化机翼结构重量。响应面方法用于减少机翼形状优化的计算成本。还研究了机翼盒结构中使用的材料对机翼最佳外形的影响。测试了三种不同的复合铺层以及金属合金。飞机的最大起飞重量和飞机的直接运营成本被用作设计指标,以在帕累托战线的机翼中确定最佳机翼。结果表明,机翼盒结构中所用材料显着影响了最佳机翼外形。

著录项

  • 来源
    《AIAA Journal》 |2014年第2期|320-337|共18页
  • 作者单位

    Delft University of Technology, 2629 HS Delft, The Netherlands;

    Delft University of Technology, 2629 HS Delft, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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