Next, an overview of the work is given:
1. To enable complex CAD geometry, the curved mesher was linked with the EGADS kernel
2. To demonstrate super-convergence of the geometric approximation, a numerical study on analytic curves and CAD models were performed
3. To prove and understand geometric super-convergence, a theoretical and empirical analysis of the solution of the non-linear equations for the geometric disparity was performed
4. To verify the geometric super-convergence, a new constrained solver was fully tested on CAD models including aircraft prototypes.
5. To demonstrate super-convergence to 3D numerical solutions, the fellow developed a software tool for high-order solutions raising the convergence order through numerical filtering.
For the project main results, the following points overview their exploitation and dissemination:
Result 1. A parallel, robust, automatic curve mesh generation tool
ESMORGA Software:
https://gitlab.com/Xulia/esmorga(s’ouvre dans une nouvelle fenêtre)Papers:
J. Docampo-Sánchez, E.Ruiz-Gironés, X. Roca. 2022. An efficient solver to approximate CAD curves with super-convergent rates. SIAM IMR22
J. Docampo Sánchez. 2022. Efficient parallel optimization for approximating CAD curves featuring super-convergence. Computer-Aided Design (accepted)
Scientific talks:
A specific-purpose solver to approximate planar curves with super-convergent rates. ICOSAHOM 2021
An efficient solver to approximate CAD curves with super-convergent rates. SIAM IMR22
Result 2. A filtering software package for post-processing numerical data
Homepage:
https://siac-magic.gitlab.io/web/(s’ouvre dans une nouvelle fenêtre)MSIAC Software:
https://gitlab.com/msiac-tool(s’ouvre dans une nouvelle fenêtre)Conferences:
1. "A filtering framework for Finite Volume/Element Schemes", High-Order NOnlinear numerical Methods for evolutionary PDEs: Theory and applications (HONOM) 2022 Spain
2. "A filtering framework for Finite Volume/Element Schemes", XVIII International Conference on Hyperbolic Problems: Theory, Numerics, Applications (HYP) 2022 Spain
3. "A filtering framework for Finite Volume/Element Schemes", North American High Order Methods Conference (NAHOMCon) 2022 USA
4. Session Chair: shock capturing & filtering, North American High Order Methods Conference (NAHOMCon) 2022 USA
5. SIAM CSE23 mini-symposium co-organiser (2 sessions): Numerical Filtering and Property Preserving Methods