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HYDRODYNAMIC CONSIDERATIONS FOR FLNG CONCEPTS

机译:FLNG概念的流体动力学考虑因素

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The current demand in liquefied natural gas (LNG) encouraged the design of various concepts for floating LNG (FLNG) liquefaction or regasification facilities. With increasing transport distance, e.g. from remote marine locations to the onshore gas supply net, gas pipelines become uneconomic compared to shuttle carriers for LNG (LNGC). Due to its high energy density, offshore transfer from processing terminals to carriers and from carriers back to receiving terminals has to be analyzed in detail. During the transfer period, free fluid surfaces occurring in the cargo tanks of the LNGC are leading to a significant decrease of the initial intact stability and altered motion behavior. This paper focusses on the influence of resonant tank sloshing on the LNGC's roll and surge motions. Analyses of transverse and longitudinal sloshing yield a surprising phenomenon: the frequency shift Aco between the theoretical natural frequency of the tank alone and the respective motion peak for a vessel with four tanks mounted to the hull. Force measurements between tank and hull reveal a peak at the tank's natural frequency that causes strong liquid motions with related forces and moments on the hull but no increased vessel motions. Additional investigations comprise the offloading situation with a multi-body arrangement of LNGC and a FLNG (the MPLS20 system) in tandem and briefly also in side-by-side configuration. The slow drift motions on the turret-moored FLNG are exemplarily investigated in head seas
机译:目前对液化天然气(LNG)的需求鼓励设计浮动LNG(FLNG)液化或再溶液设施的各种概念。随着运输距离的增加,例如,与LNG(LNGC)的班车相比,从远程海洋地区到陆上气体供应网,天然气管道变得不经济。由于其高能量密度,必须详细地分析从处理终端到载波的离摩转移到载波,并且从载波返回接收终端。在转移期间,在LNGC的货舱中发生的自由流体表面导致初始完整稳定性和变化的运动行为的显着降低。本文侧重于谐振罐晃动对LNGC卷筒辊和浪涌运动的影响。横向和纵向晃动的分析产生令人惊讶的现象:单独罐的理论自然频率与安装到船体的四个罐的各个运动峰之间的频移。坦克和船体之间的力测量显示了坦克的自然频率的峰值,导致具有相关力和船体上的液体的强液动作,但没有增加的血管运动。额外的调查包括具有LNGC的多体布置和FLNG(MPLS20系统)的卸载情况,并且简单地在并排配置中。在大海中示例性地研究了炮塔系泊流程图上的缓慢漂移运动

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