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CONCEPT TO DESIGN: A NOVEL SEAWATER INTAKE RISER SYSTEM

机译:设计理念:新型的海水吸入口系统

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FLNG cooling process uses large volume of cold seawater drawn from 500-1000 feet below the mean sea level utilizing several vertical risers (20in-30in ID) hanging from the vessel. These risers have requirements very different from conventional risers supported at hang-off and seabed. The design challenges are hang-off loads (in both strength and fatigue), minimum bend radius (MBR) and interference. Hang-off loads can be lowered using low stiffness and light weight risers, but the associated deflections and riser motions will be excessive leading to low MBR and potential interference issues. On the other hand, interference and MBR issues can be addressed by using stiffer and heavier weight risers, but this will increase hang-off loads and stresses at the platform base. Weight mass not only affects the dynamics but also provides valuable restoring moment thus helps to reduce static displacement due to current forces. Stiffness affects the bending deflections and helps achieve an acceptable MBR. Based on this, a novel alternative design for seawater intake is to use a single large diameter (60in-70in) steel caisson riser. This paper will briefly outline the preliminary concept verification and concentrate on the engineering of the concept in terms of design optimization, cost/schedule, construction, and installation. Other materials such as High Density Polyethylene Pipe (HDPE), Glass Fiber Reinforced Plastic (GFRP), will be examined for feasibility. FLNG process technology is continuing to develop to be safe, compact, and cost-efficient which also increases the possibilities of developing a number of stranded deep water gas reservoirs around the world. FLNG processes will become more efficient and cost effective with the proposed novel seawater intake system. Cost effectiveness will be evaluated in a qualitative manner.
机译:FLNG冷却过程利用从平均海平面以下500-1000英尺处抽取的大量冷海水,利用从船上悬挂的多个垂直立管(20in-30in ID)。这些立管的要求与悬挂和海底支撑的常规立管的要求非常不同。设计挑战是悬吊载荷(强度和疲劳强度),最小弯曲半径(MBR)和干涉。可以使用低刚度和轻质的立管来降低悬挂载荷,但是相关的挠曲和立管运动会过大,从而导致MBR较低和潜在的干扰问题。另一方面,可以通过使用较硬和较重的重量提升器来解决干扰和MBR问题,但这将增加平台上的悬挂负荷和应力。重量不仅影响动力学,而且还提供了重要的恢复力矩,因此有助于减少由于电流而产生的静态位移。刚度会影响弯曲变形并有助于获得可接受的MBR。基于此,一种新颖的海水取水替代设计是使用单个大直径(60英寸至70英寸)钢沉箱立管。本文将简要概述概念的初步验证,并从设计优化,成本/进度,施工和安装方面着重于概念的工程设计。其他材料,例如高密度聚乙烯管(HDPE),玻璃纤维增​​强塑料(GFRP),将进行可行性检查。 FLNG工艺技术正在不断发展,以确保安全,紧凑和具有成本效益,这也增加了在世界范围内开发许多绞合式深水气藏的可能性。拟议的新型海水进水系统将使FLNG工艺变得更加高效且具有成本效益。成本效益将以定性的方式进行评估。

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