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FATIGUE PERFORMANCE OF SUBMARINE PIPELINE GIRTH WELDS INSTALLED BY S-LAY AND REELING

机译:S-lay和绕线安装海底管道焊缝的疲劳性能

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Submarine pipelines installed on very uneven sea bottom usually results in many long free spans. If the free spans are above a certain length the pipeline will be subjected to vortex induced vibration (VIV) caused by sea currents or wave motions transverse to the pipeline direction. The onset and level of VIV will depend on several factors such as pipe dimensions and submerged weight, current velocity, seabed soil properties and span boundary condition. For uneven sea bottom, seabed intervention may be very costly if there are many high free spans that are longer than what is acceptable with respect to fatigue. There is obviously a possible economical benefit if longer free spans can be accepted due to improved fatigue performance, which may result in less intervention work by either excavation, trenching or rock/mechanical supports. This paper will summarize results from a comprehensive full scale fatigue test program that has been performed in order to verify potential enhanced fatigue design parameters of high quality pipeline welds compared to standard fatigue design parameters according to DNV-RP-C203. The testing included pipe dimensions from 6 to 16 inch OD, and tests were performed on both as welded pipes and pipes subjected to simulated reeling strains. In addition to normal welds, also welds with deliberately introduced weld defects/weld indications, maximum acceptable axial misalignment and repaired welds were tested. The test results were compared with similar recommended design parameters for pipeline girth welds. Furthermore, the effect of reeling, weld residual stresses, weld defect and repair will be presented and discussed.
机译:安装在非常不平坦的海底上的海底管道通常会导致许多长的自由跨度。如果自由跨度超过一定长度,则管道将受到由洋流或横向于管道方向的波动引起的涡激振动(VIV)。 VIV的发生和水平将取决于几个因素,例如管道尺寸和淹没重量,流速,海床土壤特性和跨度边界条件。对于海底不平坦的情况,如果有许多高自由跨度长于疲劳可接受的长度,那么海底干预可能会非常昂贵。如果由于改善的疲劳性能而可以接受更长的自由跨度,则显然可能会带来经济上的好处,这可能会减少因开挖,挖沟或岩石/机械支撑而引起的干预工作。本文将总结全面的疲劳试验程序的结果,该程序已执行,目的是验证与DNV-RP-C203标准疲劳设计参数相比,高质量管道焊缝潜在的增强疲劳设计参数。测试包括外径从6英寸到16英寸的管道,并且在焊接管道和承受模拟绕线应变的管道上进行了测试。除常规焊缝外,还测试了故意引入焊缝缺陷/焊缝痕迹,最大可接受的轴向不对中的焊缝和修复后的焊缝。测试结果与类似的推荐设计参数进行了比较。此外,还将介绍并讨论卷取,焊缝残余应力,焊缝缺陷和修复的影响。

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