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Pipeline walking and anchoring considerations in the presence of riser motion and inclined seabed

机译:管道行走和锚定考虑立管运动和倾斜的海底

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摘要

Steel Catenary Risers (SCRs), are increasingly becoming an attractive option for many deepwater field developments. SCRs are typically used to transport fluids between floating production vessels and pipelines. Typical uses may also involve the transport of produced fluids from a subsea production system to a floating production vessel or the transport of gas or water for re-injection into the producing reservoirs. The floating production vessel on which the steel catenary riser is supported will be subject to motions caused by environmental loads, and influenced by the mooring system and other risers. Horizontal movement of the vessel causes changes in the riser catenary configuration in near, mean, and far positions. On the seabed, the riser is connected to a pipeline that extends for some distance from the riser touchdown point, to its tie-in point on a pipeline or other facility. Effective tension at the touchdown point is necessary to maintain the riser configuration which may cause the pipeline to walk in the axial direction. The development of axial walking is in part due to the pull experienced on the pipeline at the touchdown point from the SCR tension. In this paper, the results of the effective axial force and the pipeline end expansion using a finite element study are presented to highlight the effect that the changing SCR tension, combined with the thermal transients and a global seabed slope along the pipeline length, has on the pipeline walking. Additionally, the paper provides some guidance in regards to the selection of the optimum location for the hold-back anchors, to ensure that pipeline walking does not compromise the integrity of both the SCR and the pipeline system.
机译:钢结鳞状提升管(SCR)越来越多地成为许多深水场发育的有吸引力的选择。 SCR通常用于在浮动生产容器和管道之间运输流体。典型的用途还可以涉及将生产的流体从海底生产系统运输到浮动生产容器或用于重新注入生产的储存器的气体或水的运输。支撑钢链状提升管的浮动生产容器将受到环境载荷引起的运动的影响,受到系泊系统和其他立管的影响。血管的水平运动会导致近,平均和远位置的提升管膨胀配置的变化。在海床上,立管连接到管道,管道距离立管触阵点延伸到管道或其他设施的搭配点。触摸点处的有效张力是保持提升管结构所必需的,这可能导致管道在轴向方向上行走。轴向行走的发展部分是由于触摸点的管道上的拉动,从SCR张力张力上有所作为。本文提出了使用有限元研究的有效轴向力和管线端膨胀的结果,突出了变化的SCR张力,结合热瞬变和沿管道长度的全球海床斜率的效果管道走路。另外,本文提供了一些关于保持锚定的最佳位置的一些指导,以确保管道行走不会损害SCR和管道系统的完整性。

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