Résumé
The topological sensitivity analysis, based on the asymptotic behavior of a cost functional associated with the creation of a small trial flaw in a defect-free solid, provides a computationally-fast, non-iterative approach for identifying flaws embedded in solids. This concept is here considered for crack identification using time-dependent measurements on the external boundary. The topological derivative of a cost function under the nucleation of a crack of infinitesimal size is established, in the framework of time-domain elasticity or acoustics. The simplicity and efficiency of the proposed formulation is enhanced by the recourse to an adjoint solution. Numerical results obtained on a 3-D elastodynamic example using the conventional FEM demonstrate the usefulness of the topological derivative as a crack indicator function. To cite this article: C. Bellis, M. Bonnet, C. R. Mecanique 337 (2009).
| langue originale | Anglais |
|---|---|
| Pages (de - à) | 124-130 |
| Nombre de pages | 7 |
| journal | Comptes Rendus - Mecanique |
| Volume | 337 |
| Numéro de publication | 3 |
| Les DOIs | |
| état | Publié - 1 janv. 2009 |
| Modification externe | Oui |
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