4.6 Article

Buckling analysis of thin plates using direct interpolation boundary element method

Journal

ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS
Volume 155, Issue -, Pages 1160-1167

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.enganabound.2023.07.035

Keywords

Stability of structures; Linear buckling; Elastic plates; Boundary element method

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The present study uses the direct integration boundary element method (DIBEM) to analyze the buckling behavior of thin plates. This method eliminates the need for domain discretization or specialized solutions. The proposed approach is compared with analytical responses and finite element method results to demonstrate its efficacy in stability analysis.
The present study employs the direct integration boundary element method (DIBEM) to analyze the buckling behavior of thin plates. Unlike conventional approaches, this method eliminates the need for domain discretization or specialized solutions. Furthermore, it constitutes a continuation from the previous research in Doval et al. (2013), which employed the radial integration method for the same investigation.To showcase the efficacy of the proposed approach, it is utilized in the stability analysis of both perforated and non-perforated plates. The findings are then compared against analytical responses, in the case of non-perforated plates, and finite element method results, for perforated plates.Moreover, the use of boundary elements reduces the size of the eigenvalue problem involved in stability analysis, as compared to finite elements, provided that only the domain and a few internal points are needed for discretization.Overall, this paper presents a novel and effective approach to the analysis of buckling plates.

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