Mobile offshore double-causeway pier system, a type of seashore unloading equipment, consists of two groups of multiple connected semi-submersible modules. This structure has wide application because most of the middl...Mobile offshore double-causeway pier system, a type of seashore unloading equipment, consists of two groups of multiple connected semi-submersible modules. This structure has wide application because most of the middle or mini type of vessels and ships can be moored to it. Based on the analysis of computational methods of multi-body motion response, a hydrodynamic model is set up and the three-dimensional potential theory in finite depth is adopted to calculate the three-dimensional motion response of this system. The double P-M spectrum is used to analyze the motion response in irregular waves. Different wave directions are specially taken into consideration, due to their various effects to the motion response. Furthermore, the calculated result is compared with that of the experiment, and it is proved that sway, heave, pitch and yaw motion are greatly constrained by mooring system. The comparison also indicates that the model can forecast the motion performance of the target, and that the calculated result can also be used as reference in connector and mooring system design.展开更多
分析由3艘船[原油转驳船(Crude Transfer Vessel,CTV)、常规油船和拖船]组成的多浮体原油转驳系统在卸载作业过程中的稳定性。根据船舶定位和拖曳模式,考虑多浮体系统所受的复杂环境载荷(包括风载荷、海流载荷和波浪载荷),研究原油卸载...分析由3艘船[原油转驳船(Crude Transfer Vessel,CTV)、常规油船和拖船]组成的多浮体原油转驳系统在卸载作业过程中的稳定性。根据船舶定位和拖曳模式,考虑多浮体系统所受的复杂环境载荷(包括风载荷、海流载荷和波浪载荷),研究原油卸载过程中多浮体系统在不同环境条件下保持准静态平衡的可能位置,得出保持准静态平衡时CTV推进器所需的最小推进力。结果表明,对于特定的风、流和波浪载荷方向,3艘船之间的夹角必须位于一定的范围内才能保持多浮体系统的平衡。展开更多
基金This studyis supported bythe National Natural Science Foundation of China(Grant No.50570047)
文摘Mobile offshore double-causeway pier system, a type of seashore unloading equipment, consists of two groups of multiple connected semi-submersible modules. This structure has wide application because most of the middle or mini type of vessels and ships can be moored to it. Based on the analysis of computational methods of multi-body motion response, a hydrodynamic model is set up and the three-dimensional potential theory in finite depth is adopted to calculate the three-dimensional motion response of this system. The double P-M spectrum is used to analyze the motion response in irregular waves. Different wave directions are specially taken into consideration, due to their various effects to the motion response. Furthermore, the calculated result is compared with that of the experiment, and it is proved that sway, heave, pitch and yaw motion are greatly constrained by mooring system. The comparison also indicates that the model can forecast the motion performance of the target, and that the calculated result can also be used as reference in connector and mooring system design.
文摘分析由3艘船[原油转驳船(Crude Transfer Vessel,CTV)、常规油船和拖船]组成的多浮体原油转驳系统在卸载作业过程中的稳定性。根据船舶定位和拖曳模式,考虑多浮体系统所受的复杂环境载荷(包括风载荷、海流载荷和波浪载荷),研究原油卸载过程中多浮体系统在不同环境条件下保持准静态平衡的可能位置,得出保持准静态平衡时CTV推进器所需的最小推进力。结果表明,对于特定的风、流和波浪载荷方向,3艘船之间的夹角必须位于一定的范围内才能保持多浮体系统的平衡。