Time domain analysis and system optimization of side-by-side mooring for FPSO and shuttle tanker

<b>Objectives</b> In view of the operational sea conditions of FPSO (Floating Production Storage and Offloading) ships in the South China Sea, this paper studies the optimization of the multi-point mooring system and side-by-side coupling system of FPSO ships and shuttle tankers. <b&g...

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Main Authors: SHI Xinghua, YU Zequn, ZHANG Ke, LIU Qin
Format: Article
Language:English
Published: Editorial Office of Chinese Journal of Ship Research 2020-02-01
Series:Zhongguo Jianchuan Yanjiu
Subjects:
Online Access:http://html.rhhz.net/ZGJCYJ/html/2020-1-127.htm
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spelling doaj-7588e6858ae04f49a304dd6859365cf02020-11-25T03:54:05ZengEditorial Office of Chinese Journal of Ship ResearchZhongguo Jianchuan Yanjiu1673-31851673-31852020-02-0115112713510.19693/j.issn.1673-3185.014002020-1-127Time domain analysis and system optimization of side-by-side mooring for FPSO and shuttle tankerSHI Xinghua0YU Zequn1ZHANG Ke2LIU Qin3School of Naval Architecture and Ocean Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, ChinaSchool of Naval Architecture and Ocean Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, ChinaSchool of Naval Architecture and Ocean Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, ChinaSchool of Naval Architecture and Ocean Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China<b>Objectives</b> In view of the operational sea conditions of FPSO (Floating Production Storage and Offloading) ships in the South China Sea, this paper studies the optimization of the multi-point mooring system and side-by-side coupling system of FPSO ships and shuttle tankers. <b>Methods</b> ANSYS-AQWA software and the potential flow theory is used to conduct time-domain analysis, optimize the mooring line segments and proportions, as well as the position of the fairlead; and Fluent software is used to analyze the influence of the change of draft on the wind and current load when the two ships are abreast.<b>Results</b> The results show that a top section of 200 m of steel cable and a bottom section of 316 m of ship chain is the most suitable FPSO multi-point mooring structure for a water depth of 200 m. Maintaining tension on the side-by-side mooring line or increasing its weight can reduce the movement range of the shuttle tanker. After the position of the fairlead is moved to midship, the forces on the fender and mooring line become more uniform. When the weight of the alongside cable is 135 kg/m, the maximum and average values of the fender and alongside cable forces can be minimized.<b>Conclusions</b> The results of this study have reference value for better understanding the influence of mooring parameters on mooring line tension and its influence on the movement of the ship, and can be used to optimize the design of mooring schemes.http://html.rhhz.net/ZGJCYJ/html/2020-1-127.htmside-by-side mooringmulti-point mooringfloating production storage and offloading (fpso) shipshuttle tankertime-domain analysisoptimization
collection DOAJ
language English
format Article
sources DOAJ
author SHI Xinghua
YU Zequn
ZHANG Ke
LIU Qin
spellingShingle SHI Xinghua
YU Zequn
ZHANG Ke
LIU Qin
Time domain analysis and system optimization of side-by-side mooring for FPSO and shuttle tanker
Zhongguo Jianchuan Yanjiu
side-by-side mooring
multi-point mooring
floating production storage and offloading (fpso) ship
shuttle tanker
time-domain analysis
optimization
author_facet SHI Xinghua
YU Zequn
ZHANG Ke
LIU Qin
author_sort SHI Xinghua
title Time domain analysis and system optimization of side-by-side mooring for FPSO and shuttle tanker
title_short Time domain analysis and system optimization of side-by-side mooring for FPSO and shuttle tanker
title_full Time domain analysis and system optimization of side-by-side mooring for FPSO and shuttle tanker
title_fullStr Time domain analysis and system optimization of side-by-side mooring for FPSO and shuttle tanker
title_full_unstemmed Time domain analysis and system optimization of side-by-side mooring for FPSO and shuttle tanker
title_sort time domain analysis and system optimization of side-by-side mooring for fpso and shuttle tanker
publisher Editorial Office of Chinese Journal of Ship Research
series Zhongguo Jianchuan Yanjiu
issn 1673-3185
1673-3185
publishDate 2020-02-01
description <b>Objectives</b> In view of the operational sea conditions of FPSO (Floating Production Storage and Offloading) ships in the South China Sea, this paper studies the optimization of the multi-point mooring system and side-by-side coupling system of FPSO ships and shuttle tankers. <b>Methods</b> ANSYS-AQWA software and the potential flow theory is used to conduct time-domain analysis, optimize the mooring line segments and proportions, as well as the position of the fairlead; and Fluent software is used to analyze the influence of the change of draft on the wind and current load when the two ships are abreast.<b>Results</b> The results show that a top section of 200 m of steel cable and a bottom section of 316 m of ship chain is the most suitable FPSO multi-point mooring structure for a water depth of 200 m. Maintaining tension on the side-by-side mooring line or increasing its weight can reduce the movement range of the shuttle tanker. After the position of the fairlead is moved to midship, the forces on the fender and mooring line become more uniform. When the weight of the alongside cable is 135 kg/m, the maximum and average values of the fender and alongside cable forces can be minimized.<b>Conclusions</b> The results of this study have reference value for better understanding the influence of mooring parameters on mooring line tension and its influence on the movement of the ship, and can be used to optimize the design of mooring schemes.
topic side-by-side mooring
multi-point mooring
floating production storage and offloading (fpso) ship
shuttle tanker
time-domain analysis
optimization
url http://html.rhhz.net/ZGJCYJ/html/2020-1-127.htm
work_keys_str_mv AT shixinghua timedomainanalysisandsystemoptimizationofsidebysidemooringforfpsoandshuttletanker
AT yuzequn timedomainanalysisandsystemoptimizationofsidebysidemooringforfpsoandshuttletanker
AT zhangke timedomainanalysisandsystemoptimizationofsidebysidemooringforfpsoandshuttletanker
AT liuqin timedomainanalysisandsystemoptimizationofsidebysidemooringforfpsoandshuttletanker
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