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Strength of submarine hoses in Chinese-lantern configuration from hydrodynamic loads on CALM buoy

机译:从CALM浮标上的水动力载荷得出的中国灯笼型海底软管强度

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Catenary Anchor Leg Moorings (CALM) buoys are offshore structures that have been used for offloading, loading and discharge purposes. In this study, dynamic analysis is carried out on the submarine hoses attached to a CALM buoy and moored by six mooring lines in a water depth of 23.0 m. Two submarine hose-strings in Chinese-lantern configuration are attached underneath the buoy. Three environmental conditions are considered, representing West Africa Sea, North Sea and Gulf of Mexico (GoM), respectively. Hydrodynamic simulation using ANSYS AQWA is first conducted to determine response amplitude operators (RAOs) of the buoy. Coupled dynamic models, where both buoys and hoses are included, are developed using Orcaflex. Parametric studies are conducted to investigate the effects of hose hydrodynamic loads and flow angles on the structural behaviour of the hoses, including bending moments, effective tension and minimum bend radius. From the study, a guidance dynamic amplitude factor of 2.0 considering hydrodynamic loads on hose DAF(hose) is proposed.
机译:悬链锚腿系泊浮标(CALM)浮标是一种海上结构,已用于卸货,装卸。在这项研究中,对连接到CALM浮标并由6条系泊线系泊在23.0 m水深的海底软管进行了动力分析。浮标下方连接了两盏中国灯笼式海底软管绳。考虑了三个环境条件,分别代表西非海,北海和墨西哥湾(GoM)。首先使用ANSYS AQWA进行水动力仿真,以确定浮标的响应幅度算子(RAO)。使用Orcaflex开发了包括浮标和软管在内的耦合动力学模型。进行了参数研究,以研究软管的流体动力载荷和流动角度对软管的结构行为的影响,包括弯矩,有效拉力和最小弯曲半径。通过研究,提出了考虑到软管DAF(软管)上的水力载荷的引导动态振幅因子2.0。

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