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A Study on the LNG Loading or Unloading Operability of Floating LNG Bunkering Terminal with Ship-to-ship Moored

机译:浮动LNG热身终端与船舶停泊的液化天然气装卸能力研究

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摘要

The floating LNG bunkering terminal (FLBT) is a newly emerging offshore platform that can be regarded as a liquefied natural gas (LNG) station at sea. It has its own station-keeping system, and it is additionally moored to other vessels during LNG loading or unloading processes. The ship-to-ship mooring system is composed of a number of mooring ropes and fenders. The relative motion responses between loading arms and corresponding manifolds are crucial for the LNG transfer process, because they have their specified allowable displacement criteria. To investigate the multibody interactions, model tests were performed previously. Some hydrodynamic coefficients obtained from the model test were utilized in numerical simulations. The eigenvalue analysis on multibodies with the ship-to-ship mooring system was also conducted. The natural modes and periods induced by the mooring ropes and fenders were identified. A series of numerical simulations with various incident wave headings and configurations were conducted with the commercial program AQWA. Finally, we judged the operable incident wave heading range under allowable displacement criteria.
机译:浮动LNG热带终端(FLBT)是一种新兴的海上平台,可被视为海上的液化天然气(LNG)站。它具有自己的站保存系统,并且在液化液晶加载或卸载过程中另外停泊在其他血管上。船舶到船舶系泊系统由许多系泊绳索和挡泥板组成。装载臂和相应歧管之间的相对运动响应对于LNG转移过程至关重要,因为它们具有其特定的允许位移标准。为了研究多体相互作用,先前进行了模型测试。在数值模拟中使用了从模型测试获得的一些流体动力学系数。还进行了对船舶停泊系统多元成型的特征值分析。鉴定了系泊绳索和挡泥板诱导的自然模式和时期。使用商业计划AQWA进行了一系列具有各种事件波标题和配置的数值模拟。最后,我们在允许的流离失所标准下判断可操作的入射波标题范围。

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