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A configurable B-spline parameterization method for structural optimization of wing boxes.

机译:一种用于翼盒结构优化的可配置B样条参数化方法。

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摘要

This dissertation presents a synthesis of methods for structural optimization of aircraft wing boxes. The optimization problem considered herein is the minimization of structural weight with respect to component sizes, subject to stress constraints. Different aspects of structural optimization methods representing the current state-of-the-art are discussed, including sequential quadratic programming, sensitivity analysis, parameterization of design variables, constraint handling, and multiple load treatment. Shortcomings of the current techniques are identified and a B-spline parameterization representing the structural sizes is proposed to address them. A new configurable B-spline parameterization method for structural optimization of wing boxes is developed that makes it possible to flexibly explore design spaces. An automatic scheme using different levels of B-spline parameterization configurations is also proposed, along with a constraint aggregation method in order to reduce the computational effort. Numerical results are compared to evaluate the effectiveness of the B-spline approach and the constraint aggregation method. To evaluate the new formulations and explore design spaces, the wing box of an airliner is optimized for the minimum weight subject to stress constraints under multiple load conditions. The new approaches are shown to significantly reduce the computational time required to perform structural optimization and to yield designs that are more realistic than existing methods.
机译:本文提出了飞机机翼盒结构优化方法的综合方法。本文考虑的最优化问题是受应力限制的结构重量相对于组件尺寸的最小化。讨论了代表当前技术水平的结构优化方法的不同方面,包括顺序二次编程,灵敏度分析,设计变量的参数化,约束处理和多重载荷处理。确定了当前技术的缺点,并提出了代表结构尺寸的B样条参数化来解决这些问题。开发了一种新的可配置B样条参数化方法,用于机翼盒的结构优化,从而可以灵活地探索设计空间。还提出了一种使用不同级别的B样条参数化配置的自动方案,以及一种约束聚合方法,以减少计算量。比较数值结果以评估B样条方法和约束聚合方法的有效性。为了评估新配方并探索设计空间,优化了客机机翼盒的最小重量,使其在多种负载条件下均受到应力限制。结果表明,新方法可以显着减少执行结构优化所需的计算时间,并且可以产生比现有方法更实际的设计。

著录项

  • 作者

    Yu, Alan Tao.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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