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Multidisciplinary design optimization of aircraft wing structures with aeroelastic and aeroservoelastic constraints.

机译:具有气动和气动弹性约束的飞机机翼结构的多学科设计优化。

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摘要

Design procedures for aircraft wing structures with control surfaces are presented using multidisciplinary design optimization. Several disciplines such as stress analysis, structural vibration, aerodynamics, and controls are considered simultaneously and combined for design optimization. Vibration data and aerodynamic data including those in the transonic regime are calculated by existing codes. Flutter analyses are performed using those data. A flutter suppression method is studied using control laws in the closed-loop flutter equation. For the design optimization, optimization techniques such as approximation, design variable linking, temporary constraint deletion, and optimality criteria are used. Sensitivity derivatives of stresses and displacements for static loads, natural frequency, flutter characteristics, and control characteristics with respect to design variables are calculated for an approximate optimization. The objective function is the structural weight. The design variables are the section properties of the structural elements and the control gain factors. Existing multidisciplinary optimization codes (ASTROS* and MSC/NASTRAN) are used to perform single and multiple constraint optimizations of fully built up finite element wing structures. Three benchmark wing models are developed and/or modified for this purpose. The models are tested extensively.
机译:通过多学科设计优化,提出了具有控制面的飞机机翼结构的设计程序。同时考虑了多个学科,例如应力分析,结构振动,空气动力学和控制,并结合起来进行设计优化。振动数据和空气动力学数据(包括跨音速状态下的数据)由现有代码计算得出。使用这些数据进行颤振分析。在闭环颤振方程中使用控制律研究了颤振抑制方法。对于设计优化,使用了诸如逼近,设计变量链接,临时约束删除和最优性标准之类的优化技术。计算静态载荷,固有频率,颤振特性和控制特性相对于设计变量的应力和位移的灵敏度导数,以进行近似优化。目标函数是结构重量。设计变量是结构元件的截面特性和控制增益因子。现有的多学科优化代码(ASTROS * 和MSC / NASTRAN)用于对完全建成的有限元机翼结构进行单约束和多约束优化。为此,开发和/或修改了三个基准机翼模型。这些模型经过了广泛的测试。

著录项

  • 作者

    Jung, Sang-Young.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 222 p.
  • 总页数 222
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;
  • 关键词

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