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Controlling lateral buckling of subsea pipeline with sinusoidal shape pre-deformation

机译:正弦形预变形控制海底管道的横向屈曲

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It is common for subsea pipelines to operate at high pressures and high temperatures (HPHT) conditions. The build-up of axial force along the pipeline due to temperature and pressure differences from as-laid conditions coupled with the influence of the seabed soil that restricts free movement of the pipeline can result in the phenomenon called 'lateral buckling'. The excessive lateral deformation from lateral buckling may risk safe operation of the pipeline due to local axial strains that potentially could be severe enough to cause fracture failure of welds or collapse of the pipeline. Engineered buckles may be initiated reliably during operation by using special subsea structures or lay methods which are expensive. This paper introduces and exemplifies a novel method that involves continuously deforming the pipeline prior to or during installation with prescribed radius and wavelength to control lateral buckling that could be a valuable modification of the practical design of offshore pipelines. Previous published work has shown that installation of a pipeline with such continuous deformations is feasible. The results from an example pipeline case described here show that the pipeline can be installed and operated safely at elevated temperatures without the need for other expensive buckle initiation methods.
机译:海底管道通常在高压和高温(HPHT)条件下运行。由于放置条件下的温度和压力差,加上沿海的土壤的影响限制了管道的自由运动,沿管道形成的轴向力会导致这种现象,称为“侧向屈曲”现象。由于局部轴向应变而引起的横向屈曲所引起的过大的横向变形可能会冒着使管线安全运行的风险,而局部轴向应变可能严重到足以引起焊缝断裂故障或管线塌陷的程度。通过使用昂贵的特殊海底结构或铺设方法,可以在运行过程中可靠地启动工程带扣。本文介绍并举例说明了一种新颖的方法,该方法包括在安装之前或安装过程中以规定的半径和波长连续变形管道,以控制横向屈曲,这可能是对海上管道实际设计的宝贵修改。先前发表的工作表明,安装具有这种连续变形的管道是可行的。此处描述的示例管道案例的结果表明,可以在高温下安全地安装和操作管道,而无需其他昂贵的扣环启动方法。

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