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POST-REELED BEHAVIOUR OF PIPELINES WITH GLOBAL BUCKLING MITIGATION BY THE RESIDUAL CURVATURE METHOD

机译:残余曲率法全球屈曲缓解管道后卷取行为

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In recent years the residual curvature method (RCM) has been used to provide buckle initiators to control and mitigate the global buckling of pipelines. Through the appropriate planning of these controlled buckles, an acceptable design of the pipeline in-place behaviour is achieved. Implementation of the residual curvature (RC) profile in the context of reel-lay installation is obtained by the modification of the vessel's straightener settings on the sections of pipe where buckle initiators are required. This leads to a local and controlled increase of the pipeline RC. The published literature on in-place assessment for a limited number of recent projects has considered that a local increase in curvature is achieved by subjecting the pipeline to pure bending until the target residual plastic strain is reached. This method simplifies the actual reel-lay process where the pipeline is subjected to successive bending cycles before the RC is achieved after the pipeline leaves the installation vessel. Consequently, the approach does not capture the whole complexity of the reeling process. This paper assesses the effect of the approach used to induce pipe local curvature on the results of the in-place analysis, where the behaviour of the pipeline with RC buckle initiators is examined. From this, it draws conclusions on the complexity required to adequately represent the effect of the RCM on the in-service behaviour and the design life of pipelines.
机译:近年来,残留曲率法(RCM)已被用于提供扣发器来控制和减轻管道的全球屈曲。通过适当的这些受控扣的规划,实现了管道就地行为的可接受设计。通过在需要支撑型引发器的管道部分上的血管的矫直机设置来获得卷尺安装中的残余曲率(RC)轮廓的实现。这导致了管道RC的局部和受控增加。在有限数量的最近项目的出于适当评估的发表的文献认为,通过使管道进行纯弯曲,直到达到目标残余塑性菌株直到达到目标残余塑性菌株,可以实现曲率的局部增加。该方法简化了在管道离开安装容器之后达到rc之前的速度弯曲循环的实际卷轴处理。因此,该方法不会捕获卷轴过程的整体复杂性。本文评估了用于诱导管道局部曲率对地理分析结果的方法的影响,其中检查了管道与RC扣发仪的行为。由此,它得出结论,以充分代表RCM对役行为和管道的设计寿命的复杂性。

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