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LATERAL BUCKLING BEHAVIOUR OF SNAKE-LAY PIPELINE WITH VERTICAL SUPPORT AT CROWN

机译:竖向支撑蛇形管道的横向屈曲行为

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Most hydrocarbon pipelines installed recently in the Middle East operate at relatively high pressures and temperatures: maximum inlet operating temperatures >90°C and pressures >135 barg. These pipelines are susceptible to Euler buckling from high axial compressive force induced in the pipeline by the temperature and pressure. Any uncontrolled lateral buckling is a potential hazard for a pipeline's structural integrity, especially when all compressive force is released at one point and excessive feed-in occurs. Possible mitigation measures include lateral restraint by rock dumping or trenching, or midline spools. Another possibility is to induce the pipeline to buckle in a controlled manner, perhaps at several locations, rather than allowing it to suffer an uncontrolled, large buckle at one location only. This is known as buckle initiation. "Snake-lay" and "Vertical Imperfection" are two methods that have been implemented successfully to initiate controlled buckling. "Buoyancy" is another method, but is yet to be implemented. Snake-lay is a relatively reliable solution but, depending on pipe-soil interaction, sometimes requires a very short radius to initiate the buckle. Installing large diameter pipelines with short radii may invite other problems such as pipeline instability during laying, or may require additional counteracting measures to maintain the specified lay radius. The lay radius can be increased with additional sleepers at the crown of the snake-lay, with a well-defined low friction factor between the pipeline and the support. This paper discusses the behavior of snake-lay pipeline with and without vertical sleeper supports at the crown of the pipeline, and demonstrates what effects supporting the pipeline at the crown will have on the buckling mechanism and the pipeline integrity.
机译:最近在中东安装的大多数碳氢化合物管道均在相对较高的压力和温度下运行:最高进口工作温度> 90°C且压力> 135 barg。这些管道易受温度和压力在管道中引起的高轴向压缩力引起的欧拉屈曲的影响。任何不受控制的横向屈曲都会对管道的结构完整性造成潜在危害,尤其是当所有压缩力在某一点被释放并且发生过多的进料时。可能的缓解措施包括通过抛石或挖沟或中线卷轴进行侧向约束。另一种可能性是使管道可能在多个位置以受控方式弯曲,而不是仅在一个位置使管道遭受不受控制的大弯曲。这被称为带扣启动。 “ Snake-lay”和“ Vertical Imperfection”是成功实施以启动受控屈曲的两种方法。 “浮力”是另一种方法,但尚未实现。 Snake-lay是一种相对可靠的解决方案,但根据管道与土壤的相互作用,有时需要很短的半径才能启动扣环。安装半径短的大直径管道可能会引起其他问题,例如在铺设过程中管道不稳定,或者可能需要采取其他抵消措施来维持规定的铺设半径。铺设半径可以在蛇形铺设的树冠处增加额外的轨枕,并在管道和支座之间具有明确定义的低摩擦系数。本文讨论了在有和没有垂直轨枕支撑的情况下蛇形管道在管道顶部的行为,并演示了在顶部支撑管道将对屈曲机制和管道完整性产生何种影响。

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