Artigo

Ultimate strength assessment of ship hull plates under non-uniform and non-stationary corrosion

Reliability Engineering & System Safety

Kakaie, A. ; Garbatov, Y. ; Guedes Soares, C.2026Elsevier

Informações chave

Autores:

Kakaie, A. (Arman Kakaie); Garbatov, Y. (Yordan Garbatov); Guedes Soares, C. (Carlos Guedes Soares)

Publicado em

Junho 2026

Resumo

An advanced methodology has been developed to evaluate the ultimate strength of ship hull plates, accounting for the non-uniform and non-stationary behaviour of the corrosion process. A stochastic Gamma process combined with random field theory is used to model the spatiotemporal variability of corrosion degradation. A large sample of spatiotemporal random plates with different levels of corrosion is generated and analysed using a non-linear finite element method. Moreover, several sensitivity analyses are performed to examine the effects of factors such as corrosion degradation heterogeneity, correlation length, plate configuration, and potential disturbances in corrosion progression on the estimation of ultimate strength. The proposed methodology provides a more realistic assessment of the ultimate strength of ship plates than current state-of-the-art approaches. This approach accounts for the temporal non-stationarity and spatial correlation and heterogeneity of corrosion, as well as the influence of initial imperfections, possible disturbances in corrosion progression, and variations in plate configuration and boundary conditions on the ultimate strength evaluation. Additionally, the framework maintains the cumulative and monotonic nature of the corrosion process, ensuring physically consistent degradation over time, and provides a robust framework for time-dependent reliability analysis and maintenance planning of ship components, facilitating more informed decision-making throughout the service life

Detalhes da publicação

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Versão da publicação

VoR - Versão publicada

Editora

Elsevier

Ligação para a versão da editora

https://www.sciencedirect.com/science/article/pii/S0951832025013614

Título do contentor da publicação

Reliability Engineering & System Safety

Primeira página ou número de artigo

112162

Volume

270

ISSN

0951-8320

Domínio Científico (FOS)

other-engineering-and-technologies - Outras Ciências da Engenharia e Tecnologias

Palavras-chave

  • Ultimate strength
  • Corrosion
  • Stochastic process
  • Random field
  • Plates

Idioma da publicação (código ISO)

eng - Inglês

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