WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVES

As oil or gas field moves deeper offshore area, offshore offloading operations such as Tandem or Side-by-Side arrangement between two floating structures take place in many locations throughout the world and also have many hydrodynamic problems. Therefore, the researches on the motion response and h...

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Main Authors: Mun Sung Kim, Sung Boo Park, Kwang Hyo Jung
Format: Article
Language:English
Published: Faculty of Mechanical Engineering and Naval Architecture 2018-01-01
Series:Brodogradnja
Online Access:http://hrcak.srce.hr/file/300879
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spelling doaj-dc7606e08d864a52bfbb3f038c66b3342020-11-25T02:27:08ZengFaculty of Mechanical Engineering and Naval ArchitectureBrodogradnja0007-215X1845-58592018-01-0169314917310.21278/brod69309204403WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVESMun Sung Kim0Sung Boo Park1Kwang Hyo Jung2Offshore Engineering Team, Samsung Heavy Industries, Co. Ltd, Gyeonggi do, Republic of KoreaDepartment of Naval Architecture and Ocean Engineering, Pusan National University, Busan, Republic of KoreaDepartment of Naval Architecture and Ocean Engineering, Pusan National University, Busan, Republic of KoreaAs oil or gas field moves deeper offshore area, offshore offloading operations such as Tandem or Side-by-Side arrangement between two floating structures take place in many locations throughout the world and also have many hydrodynamic problems. Therefore, the researches on the motion response and hydrodynamic force including first and second order between two floating structures are needed to have the more safe offloading operability in waves. In this paper, prediction of wave induced motion responses and structural loads at mid-ship section with hydrodynamic interaction effect between two offshore floating structures in various heading waves are studied by using a linearized three-dimensional potential theory. Numerical calculations using three-dimensional pulsating source distribution techniques have been carried out for hydrodynamic pressure distribution, wave exciting force, twelve coupled linear motion responses, relative motions and wave loads of the barge and the ship in oblique waves. The computational results give a good correlation with the experimental results and also with other numerical results. As a result, the present computational tool can be used effectively to predict the wave induced motions and structural loads of multiple offshore floating structures in waves.http://hrcak.srce.hr/file/300879
collection DOAJ
language English
format Article
sources DOAJ
author Mun Sung Kim
Sung Boo Park
Kwang Hyo Jung
spellingShingle Mun Sung Kim
Sung Boo Park
Kwang Hyo Jung
WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVES
Brodogradnja
author_facet Mun Sung Kim
Sung Boo Park
Kwang Hyo Jung
author_sort Mun Sung Kim
title WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVES
title_short WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVES
title_full WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVES
title_fullStr WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVES
title_full_unstemmed WAVE INDUCED COUPLED MOTIONS AND STRUCTURAL LOADS BETWEEN TWO OFFSHORE FLOATING STRUCTURES IN WAVES
title_sort wave induced coupled motions and structural loads between two offshore floating structures in waves
publisher Faculty of Mechanical Engineering and Naval Architecture
series Brodogradnja
issn 0007-215X
1845-5859
publishDate 2018-01-01
description As oil or gas field moves deeper offshore area, offshore offloading operations such as Tandem or Side-by-Side arrangement between two floating structures take place in many locations throughout the world and also have many hydrodynamic problems. Therefore, the researches on the motion response and hydrodynamic force including first and second order between two floating structures are needed to have the more safe offloading operability in waves. In this paper, prediction of wave induced motion responses and structural loads at mid-ship section with hydrodynamic interaction effect between two offshore floating structures in various heading waves are studied by using a linearized three-dimensional potential theory. Numerical calculations using three-dimensional pulsating source distribution techniques have been carried out for hydrodynamic pressure distribution, wave exciting force, twelve coupled linear motion responses, relative motions and wave loads of the barge and the ship in oblique waves. The computational results give a good correlation with the experimental results and also with other numerical results. As a result, the present computational tool can be used effectively to predict the wave induced motions and structural loads of multiple offshore floating structures in waves.
url http://hrcak.srce.hr/file/300879
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AT sungboopark waveinducedcoupledmotionsandstructuralloadsbetweentwooffshorefloatingstructuresinwaves
AT kwanghyojung waveinducedcoupledmotionsandstructuralloadsbetweentwooffshorefloatingstructuresinwaves
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