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Simultaneous shape and mesh quality optimization using pre-shape calculus Cover

Simultaneous shape and mesh quality optimization using pre-shape calculus

By: Daniel Luft and  Volker Schulz  
Open Access
|Jun 2022

Abstract

Computational meshes arising from shape optimization routines commonly suffer from decrease of mesh quality or even destruction of the mesh. In this work, we provide an approach to regularize general shape optimization problems to increase both shape and volume mesh quality. For this, we employ pre-shape calculus as established in Luft and Schulz (2021). Existence of regularized solutions is guaranteed. Further, consistency of modified pre-shape gradient systems is established. We present pre-shape gradient system modifications, which permit simultaneous shape optimization with mesh quality improvement. Optimal shapes to the original problem are left invariant under regularization. The computational burden of our approach is limited, since additional solution of possibly larger (non-)linear systems for regularized shape gradients is not necessary. We implement and compare pre-shape gradient regularization approaches for a 2D problem, which is prone to mesh degeneration. As our approach does not depend on the choice of metrics representing shape gradients, we employ and compare several different metrics.

DOI: https://doi.org/10.2478/candc-2021-0028 | Journal eISSN: 2720-4278 | Journal ISSN: 0324-8569
Language: English
Page range: 473 - 520
Submitted on: May 1, 2021
Accepted on: Aug 1, 2021
Published on: Jun 27, 2022
Published by: Systems Research Institute Polish Academy of Sciences
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2022 Daniel Luft, Volker Schulz, published by Systems Research Institute Polish Academy of Sciences
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.