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Impact Analysis of Air Gap Motion with Respect to Parameters of Mooring System for Floating Platform
作者姓名:SHEN Zhong-xiang  HUO Fa-li  NIE Yan  LIU Yin-dong
作者单位:Transportation Equipments and Ocean Engineering College, Dalian Maritime University, Dalian 116026, China,School of Naval Architecture and Offshore Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China,Grenland Group(China) Ltd., Shanghai 201206, China,Transportation Equipments and Ocean Engineering College, Dalian Maritime University, Dalian 116026, China
摘    要:In this paper, the impact analysis of air gap concerning the parameters of mooring system for the semi-submersible platform is conducted. It is challenging to simulate the wave, current and wind loads of a platform based on a model test simultaneously. Furthermore, the dynamic equivalence between the truncated and full-depth mooring system is still a tuff work. However, the wind and current loads can be tested accurately in wind tunnel model. Furthermore, the wave can be simulated accurately in wave tank test. The full-scale mooring system and the all environment loads can be simulated accurately by using the numerical model based on the model tests simultaneously. In this paper, the air gap response of a floating platform is calculated based on the results of tunnel test and wave tank. Meanwhile, full-scale mooring system, the wind, wave and current load can be considered simultaneously. In addition, a numerical model of the platform is tuned and validated by ANSYS AQWA according to the model test results. With the support of the tuned numerical model, seventeen simulation cases about the presented platform are considered to study the wave, wind, and current loads simultaneously. Then, the impact analysis studies of air gap motion regarding the length, elasticity, and type of the mooring line are performed in the time domain under the beam wave, head wave, and oblique wave conditions.

关 键 词:mooring  system  air  gap  floating  platform
收稿时间:2016/9/28 0:00:00
修稿时间:2016/10/11 0:00:00

Impact Analysis of Air Gap Motion with Respect to Parameters of Mooring System for Floating Platform
SHEN Zhong-xiang,HUO Fa-li,NIE Yan,LIU Yin-dong.Impact Analysis of Air Gap Motion with Respect to Parameters of Mooring System for Floating Platform[J].Ocean Engineering,2017,31(2):141-150.
Authors:SHEN Zhong-xiang  HUO Fa-li  NIE Yan and LIU Yin-dong
Institution:Transportation Equipments and Ocean Engineering College, Dalian Maritime University, Dalian 116026, China,School of Naval Architecture and Offshore Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China,Grenland Group(China) Ltd., Shanghai 201206, China and Transportation Equipments and Ocean Engineering College, Dalian Maritime University, Dalian 116026, China
Abstract:In this paper, the impact analysis of air gap concerning the parameters of mooring system for the semi-submersible platform is conducted. It is challenging to simulate the wave, current and wind loads of a platform based on a model test simultaneously. Furthermore, the dynamic equivalence between the truncated and full-depth mooring system is still a tuff work. However, the wind and current loads can be tested accurately in wind tunnel model. Furthermore, the wave can be simulated accurately in wave tank test. The full-scale mooring system and the all environment loads can be simulated accurately by using the numerical model based on the model tests simultaneously. In this paper, the air gap response of a floating platform is calculated based on the results of tunnel test and wave tank. Meanwhile, full-scale mooring system, the wind, wave and current load can be considered simultaneously. In addition, a numerical model of the platform is tuned and validated by ANSYS AQWA according to the model test results. With the support of the tuned numerical model, seventeen simulation cases about the presented platform are considered to study the wave, wind, and current loads simultaneously. Then, the impact analysis studies of air gap motion regarding the length, elasticity, and type of the mooring line are performed in the time domain under the beam wave, head wave, and oblique wave conditions.
Keywords:mooring system  air gap  floating platform
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