Free-form deformation,mesh morphing and reduced-order methods: enablers for efficient aerodynamic shape optimisation |
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Authors: | F. Salmoiraghi A. Scardigli H. Telib |
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Affiliation: | 1. SISSA, International School for Advanced Studies, MathLab, Trieste, Italy;2. OPTIMAD Engineering Srl, Torino, Italy;3. DISMA – Department of Mathematical Sciences, Politecnico di Torino, Torino, Italy |
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Abstract: | ![]() ABSTRACTIn this work, we provide an integrated pipeline for the model-order reduction of turbulent flows around parametrised geometries in aerodynamics. In particular, free-form deformation is applied for geometry parametrisation, whereas two different reduced-order models based on proper orthogonal decomposition (POD) are employed in order to speed-up the full-order simulations: the first method exploits POD with interpolation, while the second one is based on domain decomposition. For the sampling of the parameter space, we adopt a Greedy strategy coupled with Constrained Centroidal Voronoi Tessellations, in order to guarantee a good compromise between space exploration and exploitation. The proposed framework is tested on an industrially relevant application, i.e. the front-bumper morphing of the DrivAer car model, using the finite-volume method for the full-order resolution of the Reynolds-Averaged Navier–Stokes equations. |
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Keywords: | Model-order reduction proper orthogonal decomposition free-form deformation aerodynamics greedy sampling |
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