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Evolutionary optimization of transonic airfoils for static and dynamic trim performance

Publication ,  Journal Article
Candon, M; Carrese, R; Joseph, N; Ogawa, H; Marzocca, P
Published in: Journal of Intelligent Material Systems and Structures
May 1, 2017

The development and accelerated use of optimization frameworks in aircraft design is a testament to their ability to identify optimal and often non-intuitive shapes as a result of multi-disciplinary design objectives. Airfoil design is a continuously revised multi-disciplinary problem, and is pivotal to illustrate the performance of optimization frameworks involving numerical simulation, flexible shape parametrization, and intelligent evolutionary algorithms. An often overlooked component of this classic problem is to consider the dynamic aeroelastic behavior under trim conditions, which can generate explicit boundaries to the flight envelope. Trim introduces a significantly strong coupling with objectives governing static performance, e.g. aerodynamic and/or structural, thereby resulting in a highly nonlinear and discontinuous design space. In this paper, a multi-objective particle swarm optimization framework for multi-disciplinary performance improvement is presented, pertaining to aerodynamic, structural and aeroelastic design criteria at trim conditions. The framework is assisted by the construction of adaptive Kriging surrogates, which is cooperatively used with the numerical solver to identify optimal solutions within a computational constraint. Designer preferences are introduced to reflect the optimal compromise between the objectives. Results of the optimization process indicate a large spread in design variable influence and interaction, and a subtle yet clear distinction between all objectives is illustrated through the catalog of final airfoil candidates obtained.

Duke Scholars

Published In

Journal of Intelligent Material Systems and Structures

DOI

EISSN

1530-8138

ISSN

1045-389X

Publication Date

May 1, 2017

Volume

28

Issue

8

Start / End Page

1071 / 1088

Related Subject Headings

  • Materials
  • 40 Engineering
 

Citation

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Chicago
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MLA
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Candon, M., Carrese, R., Joseph, N., Ogawa, H., & Marzocca, P. (2017). Evolutionary optimization of transonic airfoils for static and dynamic trim performance. Journal of Intelligent Material Systems and Structures, 28(8), 1071–1088. https://doi.org/10.1177/1045389X16679019
Candon, M., R. Carrese, N. Joseph, H. Ogawa, and P. Marzocca. “Evolutionary optimization of transonic airfoils for static and dynamic trim performance.” Journal of Intelligent Material Systems and Structures 28, no. 8 (May 1, 2017): 1071–88. https://doi.org/10.1177/1045389X16679019.
Candon M, Carrese R, Joseph N, Ogawa H, Marzocca P. Evolutionary optimization of transonic airfoils for static and dynamic trim performance. Journal of Intelligent Material Systems and Structures. 2017 May 1;28(8):1071–88.
Candon, M., et al. “Evolutionary optimization of transonic airfoils for static and dynamic trim performance.” Journal of Intelligent Material Systems and Structures, vol. 28, no. 8, May 2017, pp. 1071–88. Scopus, doi:10.1177/1045389X16679019.
Candon M, Carrese R, Joseph N, Ogawa H, Marzocca P. Evolutionary optimization of transonic airfoils for static and dynamic trim performance. Journal of Intelligent Material Systems and Structures. 2017 May 1;28(8):1071–1088.
Journal cover image

Published In

Journal of Intelligent Material Systems and Structures

DOI

EISSN

1530-8138

ISSN

1045-389X

Publication Date

May 1, 2017

Volume

28

Issue

8

Start / End Page

1071 / 1088

Related Subject Headings

  • Materials
  • 40 Engineering