Study on Efficient Time Domain Fatigue Analysis of Mooring Chain by Representative Mean Position

This paper addresses the concept of the representative mean position, which was devised to improve the numerical efficiency of a time domain fatigue analysis of a mooring chain. To investigate the influence of an artificial offset of the floater on the fatigue of the mooring chain, a parametric stud...

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Main Authors: Jeongmoon Park, Yooil Kim, Jeong-Hwan Kim
Format: Article
Language:English
Published: The Korean Society of Ocean Engineers 2018-10-01
Series:한국해양공학회지
Subjects:
Online Access:https://doi.org/10.26748/KSOE.2018.6.32.5.333
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spelling doaj-3e1f5a8b766640c1864e3c3a7c2a5d712020-11-25T02:24:37ZengThe Korean Society of Ocean Engineers한국해양공학회지1225-07672287-67152018-10-0132533334010.26748/KSOE.2018.6.32.5.333Study on Efficient Time Domain Fatigue Analysis of Mooring Chain by Representative Mean Position Jeongmoon Park0Yooil Kim1Jeong-Hwan Kim 2Inha UniversityInha UniversityInha UniversityThis paper addresses the concept of the representative mean position, which was devised to improve the numerical efficiency of a time domain fatigue analysis of a mooring chain. To investigate the influence of an artificial offset of the floater on the fatigue of the mooring chain, a parametric study was performed on the moored FPSO under various combinations of offsets and environmental conditions. Tension time histories were calculated using the de-coupled analysis method, and fatigue damages were calculated to determine the influence of the offset. The parametric study was extended to a more realistic case to determine the actual effect of the representative mean position, where a comparison was made between the two different analysis results, one using the representative mean position and the other one using the actual mean position. It was confirmed that the application of the representative mean position guaranteed the conservatism of the fatigue damage with the enhanced numerical efficiency in the time domain fatigue analysis.https://doi.org/10.26748/KSOE.2018.6.32.5.333Mooring lineFatigue damageRepresentative mean positionDe-coupled analysisOffset
collection DOAJ
language English
format Article
sources DOAJ
author Jeongmoon Park
Yooil Kim
Jeong-Hwan Kim
spellingShingle Jeongmoon Park
Yooil Kim
Jeong-Hwan Kim
Study on Efficient Time Domain Fatigue Analysis of Mooring Chain by Representative Mean Position
한국해양공학회지
Mooring line
Fatigue damage
Representative mean position
De-coupled analysis
Offset
author_facet Jeongmoon Park
Yooil Kim
Jeong-Hwan Kim
author_sort Jeongmoon Park
title Study on Efficient Time Domain Fatigue Analysis of Mooring Chain by Representative Mean Position
title_short Study on Efficient Time Domain Fatigue Analysis of Mooring Chain by Representative Mean Position
title_full Study on Efficient Time Domain Fatigue Analysis of Mooring Chain by Representative Mean Position
title_fullStr Study on Efficient Time Domain Fatigue Analysis of Mooring Chain by Representative Mean Position
title_full_unstemmed Study on Efficient Time Domain Fatigue Analysis of Mooring Chain by Representative Mean Position
title_sort study on efficient time domain fatigue analysis of mooring chain by representative mean position
publisher The Korean Society of Ocean Engineers
series 한국해양공학회지
issn 1225-0767
2287-6715
publishDate 2018-10-01
description This paper addresses the concept of the representative mean position, which was devised to improve the numerical efficiency of a time domain fatigue analysis of a mooring chain. To investigate the influence of an artificial offset of the floater on the fatigue of the mooring chain, a parametric study was performed on the moored FPSO under various combinations of offsets and environmental conditions. Tension time histories were calculated using the de-coupled analysis method, and fatigue damages were calculated to determine the influence of the offset. The parametric study was extended to a more realistic case to determine the actual effect of the representative mean position, where a comparison was made between the two different analysis results, one using the representative mean position and the other one using the actual mean position. It was confirmed that the application of the representative mean position guaranteed the conservatism of the fatigue damage with the enhanced numerical efficiency in the time domain fatigue analysis.
topic Mooring line
Fatigue damage
Representative mean position
De-coupled analysis
Offset
url https://doi.org/10.26748/KSOE.2018.6.32.5.333
work_keys_str_mv AT jeongmoonpark studyonefficienttimedomainfatigueanalysisofmooringchainbyrepresentativemeanposition
AT yooilkim studyonefficienttimedomainfatigueanalysisofmooringchainbyrepresentativemeanposition
AT jeonghwankim studyonefficienttimedomainfatigueanalysisofmooringchainbyrepresentativemeanposition
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