Numerical simulation for composite wing structure design optimization of a minitype unmanned aerial vehicle

Yan Zhang, Fenfen Xiong, Shuxing Yang*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

2 Citations (Scopus)

Abstract

To improve the structure performances of minitype unmanned aerial vehicle (UAV) wing, numerical simulation and optimization design principle was carried out for designing the best composites wing structure. Thus tradeoff can be obtained between the general performance and the weight of the wing. Advanced composite material has its own outstanding features, such as high specific strength, high specific modulus, designable performance and integral forming easily. The application of advanced composite material on the aerocraft structure can significantly reduce the weight, and improve the aerodynamic and flight performances. In this paper, the parametric finite element model is established using parametric modeling technique for stress and stain analysis. Given any set of geometric parameters, the geometric modeling, meshing, strain and stress analysis can be automatically carried out in sequence. The global optimal solution is guaranteed by the proposed two-step optimization search strategy combing genetic algorithm (GA) and sequential quadratic programming (SQP). Comparative studies show that the optimization efficiency can be greatly improved with the two-step optimization search strategy.

Original languageEnglish
Pages (from-to)11-18
Number of pages8
JournalOpen Mechanical Engineering Journal
Volume5
Issue number1
DOIs
Publication statusPublished - 2011

Keywords

  • Advanced composite material
  • Optimization design
  • Parametric finite element modeling
  • Structure design

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