Analysis of the ultimate strength of corroded ships involved in collision accidents and subjected to biaxial bending
Paper i proceeding, 2018

This study presents an analysis of the effects of sudden damage, and progressive deterioration due to corrosion, on the ultimate strength of a ship which has been collided by another vessel. Finite element analyses (FEA) of collision scenarios are presented where factors are varied e.g. the vessels involved in the collision, and consider-ation of corroded ship structure elements and their material characteristics in the model. The striking ship is a coastal tanker, the struck ship is either a RoPax ship, or, a coastal oil tanker vessel. The ultimate strength analy-sis of the struck vessel accounts for the shape and size of the damage opening from the FEA. The Smith method is used to calculate the ultimate strength of intact and damaged ship structures during biaxial bending. The study shows how corroded, collision-damaged ship structures suffer from a reduction in crashworthiness and ultimate strength, how this should be considered and modelled in FEA.

Ship collision

Corrosion modelling

Ultimate strength

Smith method

Finite element method

Författare

Jonas Ringsberg

Chalmers, Mekanik och maritima vetenskaper, Marin teknik

Zhiyuan Li

Chalmers, Mekanik och maritima vetenskaper, Marin teknik

Artjoms Kuznecovs

Chalmers, Mekanik och maritima vetenskaper, Marin teknik

Erland Johnson

RISE Research Institutes of Sweden

Progress in Maritime Technology and Engineering - Proceedings of the 4th International Conference on Maritime Technology and Engineering (MARTECH 2018)

327-336
9781138585393 (ISBN)

Progress in Maritime Technology and Engineering - Proceedings of the 4th International Conference on Maritime Technology and Engineering (MARTECH 2018)
Lisbon, Portugal,

Chalmers styrkeområde Transport – finansiering 2017

Chalmers, 2017-01-01 -- 2017-12-31.

Drivkrafter

Hållbar utveckling

Innovation och entreprenörskap

Styrkeområden

Transport

Materialvetenskap

Ämneskategorier

Teknisk mekanik

Farkostteknik

Metallurgi och metalliska material

Fundament

Grundläggande vetenskaper

Infrastruktur

C3SE (Chalmers Centre for Computational Science and Engineering)

DOI

10.1201/9780429505294-38

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Senast uppdaterat

2021-09-17