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Adjoint-based aerodynamic shape optimization with hybridized discontinuous Galerkin methods

Publication ,  Journal Article
Balis, J; Jacobs, F; May, G
Published in: Computers and Fluids
January 15, 2024

We present a discrete adjoint approach to aerodynamic shape optimization (ASO) based on a hybridized discontinuous Galerkin (HDG) discretization. Our implementation is designed to tie in as seamlessly as possible into a solver architecture written for general balance laws, thus adding design capability to a tool with a wide range of applicability. Design variables are introduced on designated surfaces using the knots of a 2D spline-based geometry representation, while gradients are computed from the adjoint solution using a difference approximation of residual perturbations. A suitable optimization algorithm, such as an in-house steepest descent or the Preconditioned Sequential Quadratic Programming (PSQP) approach from the pyOpt framework, is then employed to find an improved geometry. We present verification of the implementation, including drag or heat flux minimization in compressible flows, as well as inverse design.

Duke Scholars

Published In

Computers and Fluids

DOI

ISSN

0045-7930

Publication Date

January 15, 2024

Volume

268

Related Subject Headings

  • Applied Mathematics
  • 4012 Fluid mechanics and thermal engineering
  • 0915 Interdisciplinary Engineering
  • 0913 Mechanical Engineering
  • 0102 Applied Mathematics
 

Citation

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Balis, J., Jacobs, F., & May, G. (2024). Adjoint-based aerodynamic shape optimization with hybridized discontinuous Galerkin methods. Computers and Fluids, 268. https://doi.org/10.1016/j.compfluid.2023.106116
Balis, J., F. Jacobs, and G. May. “Adjoint-based aerodynamic shape optimization with hybridized discontinuous Galerkin methods.” Computers and Fluids 268 (January 15, 2024). https://doi.org/10.1016/j.compfluid.2023.106116.
Balis J, Jacobs F, May G. Adjoint-based aerodynamic shape optimization with hybridized discontinuous Galerkin methods. Computers and Fluids. 2024 Jan 15;268.
Balis, J., et al. “Adjoint-based aerodynamic shape optimization with hybridized discontinuous Galerkin methods.” Computers and Fluids, vol. 268, Jan. 2024. Scopus, doi:10.1016/j.compfluid.2023.106116.
Balis J, Jacobs F, May G. Adjoint-based aerodynamic shape optimization with hybridized discontinuous Galerkin methods. Computers and Fluids. 2024 Jan 15;268.
Journal cover image

Published In

Computers and Fluids

DOI

ISSN

0045-7930

Publication Date

January 15, 2024

Volume

268

Related Subject Headings

  • Applied Mathematics
  • 4012 Fluid mechanics and thermal engineering
  • 0915 Interdisciplinary Engineering
  • 0913 Mechanical Engineering
  • 0102 Applied Mathematics