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A posteriori analysis of a virtual element approach on polytopal meshes for the buckling eigenvalue problem

Numerical Analysis 2026-03-24 v1 Numerical Analysis

Abstract

We introduce a novel residual-based a posteriori error estimator for the conforming C1C^1 Virtual Element Method (VEM) applied to the buckling eigenvalue problem, incorporating nonlinear plane stress effects in both two and three dimensions. The estimator is fully computable on general polyhedral meshes and implemented within the open-source \texttt{vem++} library. Its reliability is rigorously justified via bounds on the residual equation using polynomial projections, stabilisation contributions, and interpolation estimates, while efficiency is ensured through the use of bubble function arguments. Comprehensive numerical experiments in 2D and 3D illustrate the estimator's optimal accuracy and robustness, highlighting its potential for predictive analysis of complex plate structures.

Keywords

Cite

@article{arxiv.2603.20599,
  title  = {A posteriori analysis of a virtual element approach on polytopal meshes for the buckling eigenvalue problem},
  author = {Franco Dassi and Andres E Rubiano and Iván Velásquez},
  journal= {arXiv preprint arXiv:2603.20599},
  year   = {2026}
}