Parameterization adaption for 3D shape optimization in aerodynamics
When solving a PDE problem numerically, a certain mesh-refinement process is always implicit, and very classically, mesh adaptivity is a very effective means to accelerate grid convergence. Similarly, when optimizing a shape by means of an explicit geometrical representation, it is natural to seek f...
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doaj-0f6342ad2ae04b549d809c43f43ef6462020-11-25T01:07:20ZengDiponegoro UniversityInternational Journal of Science and Engineering 2086-50232302-57432014-01-0161616910.12777/ijse.6.1.61-695277Parameterization adaption for 3D shape optimization in aerodynamicsBadr Abou El Majd0Department of mathematics and computer science, Hassan II University B.P. 5366 Maârif, CasablancaWhen solving a PDE problem numerically, a certain mesh-refinement process is always implicit, and very classically, mesh adaptivity is a very effective means to accelerate grid convergence. Similarly, when optimizing a shape by means of an explicit geometrical representation, it is natural to seek for an analogous concept of parameterization adaptivity. We propose here an adaptive parameterization for three-dimensional optimum design in aerodynamics by using the so-called “Free-Form Deformation” approach based on 3D tensorial Bézier parameterization. The proposed procedure leads to efficient numerical simulations with highly reduced computational costs. [How to cite this article: Majd, B.A.. 2014. Parameterization adaption for 3D shape optimization in aerodynamics. International Journal of Science and Engineering, 6(1):61-69. Doi: 10.12777/ijse.6.1.61-69https://ejournal.undip.ac.id/index.php/ijse/article/view/6018Numerical shape optimizationFree-Form Deformationself-adaptive algorithmcompressible aerodynamics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Badr Abou El Majd |
spellingShingle |
Badr Abou El Majd Parameterization adaption for 3D shape optimization in aerodynamics International Journal of Science and Engineering Numerical shape optimization Free-Form Deformation self-adaptive algorithm compressible aerodynamics |
author_facet |
Badr Abou El Majd |
author_sort |
Badr Abou El Majd |
title |
Parameterization adaption for 3D shape optimization in aerodynamics |
title_short |
Parameterization adaption for 3D shape optimization in aerodynamics |
title_full |
Parameterization adaption for 3D shape optimization in aerodynamics |
title_fullStr |
Parameterization adaption for 3D shape optimization in aerodynamics |
title_full_unstemmed |
Parameterization adaption for 3D shape optimization in aerodynamics |
title_sort |
parameterization adaption for 3d shape optimization in aerodynamics |
publisher |
Diponegoro University |
series |
International Journal of Science and Engineering |
issn |
2086-5023 2302-5743 |
publishDate |
2014-01-01 |
description |
When solving a PDE problem numerically, a certain mesh-refinement process is always implicit, and very classically, mesh adaptivity is a very effective means to accelerate grid convergence. Similarly, when optimizing a shape by means of an explicit geometrical representation, it is natural to seek for an analogous concept of parameterization adaptivity. We propose here an adaptive parameterization for three-dimensional optimum design in aerodynamics by using the so-called “Free-Form Deformation” approach based on 3D tensorial Bézier parameterization. The proposed procedure leads to efficient numerical simulations with highly reduced computational costs.
[How to cite this article: Majd, B.A.. 2014. Parameterization adaption for 3D shape optimization in aerodynamics. International Journal of Science and Engineering, 6(1):61-69. Doi: 10.12777/ijse.6.1.61-69 |
topic |
Numerical shape optimization Free-Form Deformation self-adaptive algorithm compressible aerodynamics |
url |
https://ejournal.undip.ac.id/index.php/ijse/article/view/6018 |
work_keys_str_mv |
AT badrabouelmajd parameterizationadaptionfor3dshapeoptimizationinaerodynamics |
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