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Study of the Prediction of Fatigue Damage Considering the Hydro-elastic Response of a Very Large Ore Carrier (VLOC) |
Beom-Il Kim, Kang-Hyun Song |
J. Ocean Eng. Technol.. 2019;33(1):33-41. Published online February 27, 2019 DOI: https://doi.org/10.26748/KSOE.2018.085 |
Study of the Prediction of Fatigue Damage Considering the Hydro-elastic Response of a Very Large Ore Carrier (VLOC) Hydro-Elastic Contributions to Fatigue Damage on a Large Monopile The fatigue life prediction for structure with surface scratch considering cutting residual stress, initial plasticity damage and fatigue damage Fatigue life calculation for a specimen with an impact pit considering impact damage, residual stress relaxation and elastic-plastic fatigue damage Development of a non-local approach for life prediction of notched specimen considering stress/strain gradient and elastic-plastic fatigue damage Residual ultimate strength of a very large crude carrier considering probabilistic damage extents Hydroelastic response and fatigue analysis of a multi-module very large floating structure Application of Fatigue Damage Evaluation Considering Linear Hydroelastic Effects of Very Large Container Ships Using 1D and 3D Structural Models Prediction of fatigue damage for composite laminate using impact response Fatigue life prediction for butt‐welded joints considering weld‐induced residual stresses and initial damage, relaxation of residual stress, and elasto‐plastic fatigue damage |