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LATERAL BUCKLING INDUCED BY TRAWL GEARS PULL-OVER LOADS ON HIGH TEMPERATURE/HIGH PRESSURE SUBSEA PIPELINE

机译:高温/高压地下管道上的牵引齿轮拉力引起的侧向屈曲

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Lateral buckling has become a challenge to deep water and high pressure/high temperature (HP/HT) flowlines. In areas that support major commercial fishing industries (e.g. the North Sea in Norway and Atlantic Margin in UK), there is high possibility of interaction between flowlines and fishing trawl gears. This interaction can expose the flowlines to substantial loads and induce lateral buckling.This paper presents global response of subsea pipeline as a result of trawl gear pull-over loads. The external interference from trawl gear pull-over loads can create substantial imperfection or out-of-straightness on the pipeline and may also generate global lateral buckling. The pull-over loads can also induce excessive bending moments and strains in the buckle region.To be able to understand the global response of the pipeline under pull-over loading conditions, a Finite Element (FE) analysis is carried out based on DNV OS F101 [1], DNV RP F110 [2] and DNV RP F111 [3] using general FE analysis software ANSYS v13. Non-linear transient analysis is used to incorporate the non-linear effects, such as the pipeline material nonlinearity, and the response of a structure under the action of pull-over time-dependent loads [8].The FE analysis covers two periods of duration, i.e. during pull-over duration and post pull-over duration. The analysis during pull-over duration deals with the pipeline global response as a result of trawl gear pull-over loads. The pipeline is subjected to substantial horizontal and vertical pull-over forces from the trawl gear. For post pull-over duration, the FE analysis was carried out for an additional five seconds. In this period, the pull-over loads are no longer applied. However, the pipeline may expand further due to temperature and pressure loads on pipeline.The FE analysis result shows that the pull-over loads induce out-of-straightness on the pipeline and may cause lateral buckling. The pipeline deforms laterally at the pull-over location. The DNV displacement condition code check is used to check the integrity of the pipeline. The pipeline may in the risk under the trawl gears pull-over loads.This paper also shows the development of lateral buckling on the pipeline under different magnitudes of trawl gear pullover loads and lateral soil frictions. Further work should also take into account different dimension of pipeline, as the variation of operating temperature and pressure and variation of lateral and axial soil friction combinations to obtain better conclusions.
机译:横向屈曲已成为深水和高压/高温(HP / HT)流水线的挑战。在支持主要商业捕鱼业的地区(例如挪威的北海和英国的大西洋边距),流线与拖网渔具之间相互作用的可能性很高。这种相互作用可以使流水线承受较大的载荷并引起横向屈曲。本文介绍了拖网齿轮拉拔载荷对海底管道的整体响应。拖网齿轮上翻载荷的外部干扰会在管道上造成很大的瑕疵或直线度,还可能产生整体横向屈曲。上拉载荷还会在弯头区域引起过大的弯矩和应变。为了了解上拉载荷条件下管道的整体响应,基于DNV OS进行了有限元(FE)分析使用通用FE分析软件ANSYS v13的F101 [1],DNV RP F110 [2]和DNV RP F111 [3]。非线性瞬态分析用于合并非线性影响,例如管道材料的非线性以及在与时间相关的荷载作用下结构的响应[8]。有限元分析涵盖两个阶段持续时间,即在上拉持续时间和后上拉持续时间中。上浮持续时间期间的分析处理了拖网齿轮上浮负荷引起的管道全局响应。管道从拖网齿轮承受相当大的水平和垂直上拉力。对于上拉后的持续时间,再进行有限元分析5秒钟。在此期间,不再施加上拉载荷。然而,由于温度和压力负荷,管道可能会进一步膨胀。有限元分析结果表明,拉拔负荷会引起管道不平直,并可能引起侧向屈曲。管道在上拉位置处横向变形。 DNV位移条件代码检查用于检查管道的完整性。在拖网齿轮的拉拔载荷作用下,管道可能处于危险之中。本文还显示了在不同幅度的拖网齿轮的拉拔载荷和土壤侧向摩擦力作用下,管道的侧向屈曲的发展。进一步的工作还应考虑管道的不同尺寸,因为工作温度和压力的变化以及横向和轴向土壤摩擦力组合的变化才能得出更好的结论。

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