Fatigue analysis on the mooring chain of a spread moored FPSO considering the OPB and IPB

The appropriate design of a mooring system to maintain the position of an offshore structure in deep sea under various environmental loads is important. Fatigue design of the mooring line considering OPB/IPB(out-of-plane bending/in-plane bending) became an essential factor after the incident of prem...

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Main Authors: Yooil Kim, Min-Suk Kim, Myong-Jin Park
Format: Article
Language:English
Published: Elsevier 2019-01-01
Series:International Journal of Naval Architecture and Ocean Engineering
Online Access:http://www.sciencedirect.com/science/article/pii/S2092678217303795
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spelling doaj-fd40b94d4ff94fd1928d3ea592cdf3062020-11-25T01:52:54ZengElsevierInternational Journal of Naval Architecture and Ocean Engineering2092-67822019-01-01111178201Fatigue analysis on the mooring chain of a spread moored FPSO considering the OPB and IPBYooil Kim0Min-Suk Kim1Myong-Jin Park2Corresponding author.; Department of Naval Architecture and Ocean Engineering, INHA University, 100, Inha-ro, Nam-gu, Incheon, South KoreaDepartment of Naval Architecture and Ocean Engineering, INHA University, 100, Inha-ro, Nam-gu, Incheon, South KoreaDepartment of Naval Architecture and Ocean Engineering, INHA University, 100, Inha-ro, Nam-gu, Incheon, South KoreaThe appropriate design of a mooring system to maintain the position of an offshore structure in deep sea under various environmental loads is important. Fatigue design of the mooring line considering OPB/IPB(out-of-plane bending/in-plane bending) became an essential factor after the incident of premature fatigue failure of the mooring chain due to OPB/IPB in the Girassol region in West Africa. In this study, mooring line fatigue analysis was performed considering the OPB/IPB of a spread moored FPSO in deep sea. The tension of the mooring line was derived by hydrodynamic analysis using the de-coupled analysis method. The floater motion time histories were calculated under the assumption that the mooring line behaves in quasi-static manner. Additional time domain analysis was carried out by prescribing the obtained motions on top of the selected critical mooring line, which was determined based on spectral fatigue analysis. In addition, nonlinear finite element analysis was performed considering the material nonlinearities, and both the interlink stiffness and stress concentration factors were derived. The fatigue damage to the chain surface was estimated by combining both the hydrodynamic and stress analysis results. Keywords: Mooring chain, Out-of-plane bending, In-plane bending, De-coupled analysis, Fatigue, Interlink stiffnesshttp://www.sciencedirect.com/science/article/pii/S2092678217303795
collection DOAJ
language English
format Article
sources DOAJ
author Yooil Kim
Min-Suk Kim
Myong-Jin Park
spellingShingle Yooil Kim
Min-Suk Kim
Myong-Jin Park
Fatigue analysis on the mooring chain of a spread moored FPSO considering the OPB and IPB
International Journal of Naval Architecture and Ocean Engineering
author_facet Yooil Kim
Min-Suk Kim
Myong-Jin Park
author_sort Yooil Kim
title Fatigue analysis on the mooring chain of a spread moored FPSO considering the OPB and IPB
title_short Fatigue analysis on the mooring chain of a spread moored FPSO considering the OPB and IPB
title_full Fatigue analysis on the mooring chain of a spread moored FPSO considering the OPB and IPB
title_fullStr Fatigue analysis on the mooring chain of a spread moored FPSO considering the OPB and IPB
title_full_unstemmed Fatigue analysis on the mooring chain of a spread moored FPSO considering the OPB and IPB
title_sort fatigue analysis on the mooring chain of a spread moored fpso considering the opb and ipb
publisher Elsevier
series International Journal of Naval Architecture and Ocean Engineering
issn 2092-6782
publishDate 2019-01-01
description The appropriate design of a mooring system to maintain the position of an offshore structure in deep sea under various environmental loads is important. Fatigue design of the mooring line considering OPB/IPB(out-of-plane bending/in-plane bending) became an essential factor after the incident of premature fatigue failure of the mooring chain due to OPB/IPB in the Girassol region in West Africa. In this study, mooring line fatigue analysis was performed considering the OPB/IPB of a spread moored FPSO in deep sea. The tension of the mooring line was derived by hydrodynamic analysis using the de-coupled analysis method. The floater motion time histories were calculated under the assumption that the mooring line behaves in quasi-static manner. Additional time domain analysis was carried out by prescribing the obtained motions on top of the selected critical mooring line, which was determined based on spectral fatigue analysis. In addition, nonlinear finite element analysis was performed considering the material nonlinearities, and both the interlink stiffness and stress concentration factors were derived. The fatigue damage to the chain surface was estimated by combining both the hydrodynamic and stress analysis results. Keywords: Mooring chain, Out-of-plane bending, In-plane bending, De-coupled analysis, Fatigue, Interlink stiffness
url http://www.sciencedirect.com/science/article/pii/S2092678217303795
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AT minsukkim fatigueanalysisonthemooringchainofaspreadmooredfpsoconsideringtheopbandipb
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