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IMPROVED STABILITY DESIGN OF SUBSEA PIPELINES ON MOBILE SEABEDS: LEARNINGS FROM THE STABLEpipe JIP

机译:移动海底管道的改进的稳定性设计:来自稳定管接头的经验教训

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The on-bottom stability design of subsea pipelines is important to ensure safety and reliability but is challenging to achieve, particularly in Australia due to onerous metocean and seabed conditions, and the prevalence of light gas pipelines. This challenge has been amplified by the fact that industry design guidelines have given no guidance on how to incorporate the potential benefits of seabed mobility, which can lead to lowering and self-burial of the pipeline on a sandy seabed. In this paper, we review the learnings of the STABLEpipe Joint Industry Project (JIP), which was initiated with the aim of developing new design guidelines to assess the on-bottom stability of pipelines on mobile seabeds. The paper summarises the new research undertaken within the STABLEpipe JIP to better predict sedimentation and scour, pipe-fluid interaction and pipe-soil interaction. New design methods to assess the on-bottom stability are also outlined, which have been developed based on the new research. These methods have been adopted in a DNVGL guideline authored by the JIP researchers in collaboration with DNVGL and presently available for use by the JIP participants. Finally, applications of the STABLEpipe JIP outcomes and focus areas for further work are discussed.
机译:海底管道的底部稳定性设计对于确保安全性和可靠性很重要,但要实现这一目标却极具挑战性,特别是在澳大利亚,由于海洋和海底条件恶劣,以及轻型天然气管道的盛行。行业设计指南未就如何整合海床移动性的潜在好处提供任何指导,这一事实加剧了这一挑战,因为这可能会导致沙质海床上的管道下降和自行掩埋。在本文中,我们回顾了STABLEpipe联合工业项目(JIP)的学习情况,该项目的目的是制定新的设计指南,以评估移动海底管道的底部稳定性。本文总结了在STABLEpipe JIP内进行的新研究,以更好地预测沉积和冲刷,管道与流体的相互作用以及管道与土壤的相互作用。还概述了评估底部稳定性的新设计方法,这些方法是在新研究的基础上开发的。这些方法已由JIP研究人员与DNVGL合作编写的DNVGL指南中采用,目前可供JIP参与者使用。最后,讨论了STABLEpipe JIP结果的应用和进一步工作的重点领域。

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