Investigating the Ice-Induced Fatigue Damage of Offshore Structures by Field Observations

The oil and natural gas resources of the Bohai Sea are mainly marginal oil fields, and there are currently a large number of structures that are approaching or have reached the end of their service life called aging structures. The interactions between ice and offshore structures could lead to signi...

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Main Authors: Yating Huang, Songsong Yu, Tai An, Guojun Wang, Dayong Zhang
Format: Article
Language:English
Published: MDPI AG 2023-09-01
Series:Journal of Marine Science and Engineering
Subjects:
Online Access:https://www.mdpi.com/2077-1312/11/10/1844
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author Yating Huang
Songsong Yu
Tai An
Guojun Wang
Dayong Zhang
author_facet Yating Huang
Songsong Yu
Tai An
Guojun Wang
Dayong Zhang
author_sort Yating Huang
collection DOAJ
description The oil and natural gas resources of the Bohai Sea are mainly marginal oil fields, and there are currently a large number of structures that are approaching or have reached the end of their service life called aging structures. The interactions between ice and offshore structures could lead to significant ice-induced vibration. Ice-induced vibrations may evoke fatigue damage in tubular joints, which results in severe dangers for offshore platforms in the Bohai Sea. Dynamic ice force models and sea ice fatigue environmental parameters have not been well developed in the current design codes. It is not accurate to evaluate the fatigue damage of structures only with numerical simulation. In this paper, a faster method for evaluating fatigue damage on aging structures is proposed. Firstly, the approximate linear relationship between the fatigue hot spot stress and the vibration response of the deck structure has been discovered using dynamic analysis for jacket platform of Bohai Sea. Then, the procedure of the fatigue damage evaluation of the aging structures in the Bohai Sea is established. Finally, the numerical simulation of the structure is carried out considering ice thickness, ice velocity, ice direction, and action height of sea ice. Fatigue damage is calculated by the fatigue hot spot stress and the Palmgren–Miner rule. The measured data on the platform in the Bohai Sea are selected to obtain the fatigue hot spot stress using a mathematical model. The fatigue damage results considering the actual ice conditions of a jacket structure in the Bohai Sea are compared using the proposed method and finite element analysis. The comparison of the results verifies the rationality of the method proposed in this work.
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spelling doaj.art-1dd0980dd09b4cc7952b17c35cc09c4c2023-11-19T16:57:29ZengMDPI AGJournal of Marine Science and Engineering2077-13122023-09-011110184410.3390/jmse11101844Investigating the Ice-Induced Fatigue Damage of Offshore Structures by Field ObservationsYating Huang0Songsong Yu1Tai An2Guojun Wang3Dayong Zhang4School of Ocean Science and Technology, Dalian University of Technology, Panjin 124221, ChinaCentral Southern China Electric Power Design Institute, Wuhan 430071, ChinaSchool of Ocean Science and Technology, Dalian University of Technology, Panjin 124221, ChinaSchool of Ocean Science and Technology, Dalian University of Technology, Panjin 124221, ChinaSchool of Ocean Science and Technology, Dalian University of Technology, Panjin 124221, ChinaThe oil and natural gas resources of the Bohai Sea are mainly marginal oil fields, and there are currently a large number of structures that are approaching or have reached the end of their service life called aging structures. The interactions between ice and offshore structures could lead to significant ice-induced vibration. Ice-induced vibrations may evoke fatigue damage in tubular joints, which results in severe dangers for offshore platforms in the Bohai Sea. Dynamic ice force models and sea ice fatigue environmental parameters have not been well developed in the current design codes. It is not accurate to evaluate the fatigue damage of structures only with numerical simulation. In this paper, a faster method for evaluating fatigue damage on aging structures is proposed. Firstly, the approximate linear relationship between the fatigue hot spot stress and the vibration response of the deck structure has been discovered using dynamic analysis for jacket platform of Bohai Sea. Then, the procedure of the fatigue damage evaluation of the aging structures in the Bohai Sea is established. Finally, the numerical simulation of the structure is carried out considering ice thickness, ice velocity, ice direction, and action height of sea ice. Fatigue damage is calculated by the fatigue hot spot stress and the Palmgren–Miner rule. The measured data on the platform in the Bohai Sea are selected to obtain the fatigue hot spot stress using a mathematical model. The fatigue damage results considering the actual ice conditions of a jacket structure in the Bohai Sea are compared using the proposed method and finite element analysis. The comparison of the results verifies the rationality of the method proposed in this work.https://www.mdpi.com/2077-1312/11/10/1844offshore structuresfatigue damagefield observationsice-induced vibrations
spellingShingle Yating Huang
Songsong Yu
Tai An
Guojun Wang
Dayong Zhang
Investigating the Ice-Induced Fatigue Damage of Offshore Structures by Field Observations
Journal of Marine Science and Engineering
offshore structures
fatigue damage
field observations
ice-induced vibrations
title Investigating the Ice-Induced Fatigue Damage of Offshore Structures by Field Observations
title_full Investigating the Ice-Induced Fatigue Damage of Offshore Structures by Field Observations
title_fullStr Investigating the Ice-Induced Fatigue Damage of Offshore Structures by Field Observations
title_full_unstemmed Investigating the Ice-Induced Fatigue Damage of Offshore Structures by Field Observations
title_short Investigating the Ice-Induced Fatigue Damage of Offshore Structures by Field Observations
title_sort investigating the ice induced fatigue damage of offshore structures by field observations
topic offshore structures
fatigue damage
field observations
ice-induced vibrations
url https://www.mdpi.com/2077-1312/11/10/1844
work_keys_str_mv AT yatinghuang investigatingtheiceinducedfatiguedamageofoffshorestructuresbyfieldobservations
AT songsongyu investigatingtheiceinducedfatiguedamageofoffshorestructuresbyfieldobservations
AT taian investigatingtheiceinducedfatiguedamageofoffshorestructuresbyfieldobservations
AT guojunwang investigatingtheiceinducedfatiguedamageofoffshorestructuresbyfieldobservations
AT dayongzhang investigatingtheiceinducedfatiguedamageofoffshorestructuresbyfieldobservations