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Abstract Since various existing simulation tools based on multibody system dynamics have focused on conventional mechanical systems, such as machinery, car, and spacecraft, there are some problems in the application of these simulation tools to shipbuilding domains due to the absence of specific items in the field of naval architecture and ocean engineering, such as hydrostatics, hydrodynamics, and mooring forces. Thus, a multibody system dynamics simulator was developed by authors for design and production of ships and offshore structures. The developed simulator is based on six kernels: multibody system dynamics kernel, force calculation kernel, numerical analysis kernel, hybrid simulation kernel, scenario management kernel, and collision detection kernel. Based on these kernels, we develop a simulator including following graphic user interfaces (GUIs): modeling, visualization, and report GUI. In addition, the geometry properties of the block and facilities in shipyards are necessary to configure the simulation for design and production of ships and offshore plants, so these are managed in the database and connected to specific commercial CAD system in shipyards. The developed simulator was applied to various examples for design and production of ships and offshore plants. The results show that the simulator is useful for various simulations of the operations in shipyards and offshore industries.
Publication Date 2014-10-15
Myung-Il Roh, Sol Ha, Nam-Kug Ku, Seung-Ho Ham, "Multibody System Dynamics Simulator for Design and Production of Ships and Offshore Plants", Proceedings of the 28th Asian-Pacific TEAM(Technical Exchange and Advisory Meeting on Marine Structures) 2014, Istanbul, Turkey, pp. 481-494, 2014.10.13-16

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    Advanced Ship Tech V: Design, Analysis & Construction 1, ISOPE(International Society of Offshore and Polar Engineers) 2016, Rhodes, Greece, 2016.06.26-07.01

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    Advanced Ship Tech VIII: Shipbuilding Simulation: ISOPE(International Society of Offshore and Polar Engineers) 2015, Hawaii, USA, 2015.06.21-26

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    Strength and Risk, ISOPE(International Society of Offshore and Polar Engineers) 2014, Busan, Korea, 2014.06.15-20

  4. Seung-Ho Ham, Myung-Il Roh, Hye-Won Lee, Jung-Woo Hong, "Dynamic Motion Analysis of a Drilling Rig Connected with Flexible Risers based on Flexible Multibody Dynamics", Proceedings of SUTTC 2016, Beijing, China, 2016.09.26-30

  5. Luman Zhao, Myung-Il Roh, Seung-Ho Ham, "Hardware-In-the-Loop Simulation for the Design and Testing of an Active Compensation System on an Offshore Supply Vessel", Proceedings of SUTTC 2016, Beijing, China, 2016.09.26-30

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    이혜원, 노명일, 함승호, 홍진욱, 문중수, 심우승, “초대형 해상 크레인의 작업 안정성 평가 프로그램 개발”, 2016년도 한국CAD/CAM학회 하계학술발표회, 부산, pp. 133, 2016.08.25-26

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    in Domestic Conference

    이승민, 노명일, 김기수, 함승호, “항로, 해상환경, 운동을 고려한 선박의 실감 운항 가시화 기술 연구”, 2016년도 한국CAD/CAM학회 하계학술발표회, 부산, pp. 192, 2016.08.25-26

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    in Domestic Conference

    김주성, 노명일, 함승호, 김기수, “구획 내 기체의 압축을 고려한 선박의 동적 침수 해석 방법 연구”, 2016년도 한국CAD/CAM학회 하계학술발표회, 부산, pp. 131, 2016.08.25-26

  9. Seung-Ho Ham, Myung-Il Roh, Hye-Won Lee, Jeong-Woo Hong, "Multi-physics Simulation Framework for Design and Production of Ships and Offshore Plants", Proceedings of PRADS 2016, Copenhagen, Denmark, 2016.09.04-09.08

  10. Ki-Su Kim, Myung-Il Roh, Seung-Ho Ham, "Ship Route Planning Considering the Effects of Sea State and the Fuel Consumption", Proceedings of PRADS 2016, Copenhagen, Denmark, 2016.09.04-09.08

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