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A Comparison of coupled and uncoupled dynamic analysis for the flexible riser in shallow water

机译:浅水挠性立管耦合和非耦合动力分析的比较

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Flexible risers have been used extensively in recent years for floating and early production systems. Such risers offer the advantage of having inherent heave compliance in their catenary thereby greatly reducing the complexity of the riser-to-rig and riser-to subsea interfaces. Another advantage with flexible risers is their greater reliability. Concerns about fatigue life, gas permeation and pigging of lines have been overcome by extensive experience with these risers in production applications. In this paper, flexible riser analysis results were compared through coupled and uncoupled dynamic analyses methods. A time domain coupled analysis capability has been developed to model the dynamic responses of an integrated floating system incorporating the interactions between vessel, moorings and risers in a marine environment. For this study, SPM (Single Point Mooring) system for an FSU in shallow water was considered. This optimization model was integrated with a time-domain global motion analysis to assess both stability and design constraints of the flexible riser system.
机译:近年来,柔性立管已广泛用于浮动和早期生产系统。这种立管具有在其接触链中具有固有的隆起顺应性的优点,从而大大降低了立管到钻机以及立管到海底接口的复杂性。柔性立管的另一个优点是可靠性更高。这些立管在生产应用中的丰富经验克服了对疲劳寿命,气体渗透和管线清管的担忧。本文通过耦合和非耦合动态分析方法对柔性立管分析结果进行了比较。已开发出时域耦合分析功能,以对集成浮动系统的动态响应进行建模,该系统将海洋环境中的船舶,系泊设备和立管之间的相互作用纳入其中。在本研究中,考虑了浅水FSU的SPM(单点系泊)系统。该优化模型与时域全局运动分析集成在一起,以评估柔性立管系统的稳定性和设计约束。

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