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ROCK BERM DESIGN FOR PIPELINE STABILITY

机译:管道岩壁设计的稳定性

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Stabilizing large diameter natural gas pipelines on the seabed against extreme hydrodynamic loading conditions has proven to be challenging in the northwest of Australia. Tropical storms, which affect the area annually between November and April, can generate wave heights exceeding 30 m and storm steady state currents of 2 m/s or more. Consequently, in shallow water depths, typically less than 40 - 60 m, subsea pipelines can be subjected to very high hydrodynamic loads, potentially causing significant lateral movement. To mitigate the risk of the pipeline suffering mechanical damage due to excessive lateral movement, quarried and graded rock is often dumped over the pipeline as a secondary stabilization solution.In order to satisfy functional requirements, the rock berm must comprise of a sufficiently large rock grading size and berm volume to withstand the design hydrodynamic loading such that the pipeline cannot break out of the berm. The design of rock berms for pipeline secondary stabilization has traditionally followed a deterministic approach that uses empirical equations for preliminary rock sizing, followed by small-scale physical modeling for design verification and optimization. Whilst the traditional approach can be effective in producing a robust rock berm design, opportunities for further optimization are inhibited by a lack of available data and an imperfect understanding of the failure mechanisms.This paper presents an overview of an improved approach for rock berm design optimization. A general overview of rock berms, the design principles, benefits and risks are also presented.
机译:在澳大利亚西北部地区,稳定海底大口径天然气管道以应对极端的水力载荷条件已成为一项挑战。每年11月至4月之间影响该地区的热带风暴,可能会产生超过30 m的波高和2 m / s或更高的稳定稳态流。因此,在通常小于40-60 m的浅水深度中,海底管道可能会承受非常高的流体动力载荷,从而可能导致明显的横向运动。为了减轻由于过度的横向运动而使管道遭受机械损坏的风险,通常将经过开采和分级的岩石作为次要的稳定解决方案倾倒在管道上。为了满足功能要求,岩石护堤必须包括足够大的岩石坡度尺寸和护壁体积,以承受设计的动压载荷,以使管道不会从护壁伸出。传统上,用于管道二次稳定的岩堤设计遵循确定性方法,该方法使用经验方程式进行初步岩石定径,然后使用小规模物理建模进行设计验证和优化。尽管传统方法可以有效地进行稳健的岩边设计,但由于缺乏可用数据以及对破坏机理的不完善,进一步优化的机会受到了限制。本文概述了一种改进的岩边设计优化方法。还介绍了岩石护堤的一般概述,设计原则,收益和风险。

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