粘接机械衬管的可靠性评价

G. Toguyeni, J. Fernandez-Vega, R. Jones, Martin Gallegillo, J. Banse
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引用次数: 0

摘要

GluBi®内衬管是一种防止机械内衬管(MLP)内衬起皱的解决方案,在卷取过程中使用标准的3.0mm厚衬管,而无需使用加压。由于衬管与外管粘接,因此尽管安装方法施加了全局塑性应变,但仍能保持其完整性。这种新型管线产品通过详细的有限元分析程序进行测试,以充分捕捉管道和粘合剂在温度和负载条件下的性能,从而符合海上使用的要求。该分析程序的目的是研究GluBi®管道的可释放性。不稳定性被定义为管道承受典型管道安装的循环塑性变形的能力,即通过卷绕而不形成CRA衬垫起皱,并保持胶粘剂层的完整性,特别是在管道末端焊缝覆盖层附近。GluBi®管道设计的重要部分是管道末端,特别是尾管和焊缝覆盖层长度之间的过渡。建立了管道的详细有限元模型。它捕获了管道制造的所有阶段:管道衬砌,静水压膨胀,粘合剂固化,覆盖焊缝沉积和缫丝模拟。管道模型为312.1mm外径× 19.7mm WT SMLS 450,标称3.0mm厚Alloy 625内衬。为获得衬管与外管间胶粘剂层的精确材料响应,进行了重要的验证工作。因此,在涵盖所有可能的制造和安装条件的温度范围内,通过剪切和剥离来评估粘合剂的机械性能。根据物理试验结果验证了模型的元件和粘接性能建模。对胶粘剂固化温度、管端衬板与覆盖焊缝间胶粘剂过渡几何形状以及衬板厚度进行了敏感性分析。该模型对Subsea 7的卷绕船进行了摇尾模拟。根据一系列验收标准评估了班轮摇尾后的完整性。这些研究使得建立管道安全安装的参数范围成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reelability Assessment of Adhesively Bonded Mechanically Lined Pipe
A solution to prevent liner wrinkling in Mechanically Lined Pipes (MLP) with a standard 3.0mm thick liner during reeling, without the use of pressurisation, has been developed in the form of the GluBi® lined pipe. The liner being adhesively bonded to the outer pipe, its integrity is maintained despite the global plastic strain applied by the installation method. This new linepipe product has been qualified for offshore use through testing accompanied by a detailed Finite Element Analysis programme to fully capture the pipe and adhesive behaviours under and range of temperatures and loading conditions. The objective of this analysis program was to investigate the reelability of the GluBi® pipe. The instalability was defined as the capability of the pipe to tolerate cyclic plastic deformation representative of a typical pipeline installation by reeling without the formation of wrinkling of the CRA liner, and to maintain the integrity of the adhesive layer, particularly near the weld overlay at the pipe ends. Important areas of the GluBi® pipe design are the pipe extremities, particularly the transition between the liner and the weld overlay length. A detailed Finite Element model of the pipe was created. It captured all stages of the pipe manufacturing: pipe lining, hydrostatic expansion, adhesive curing, overlay weld deposition and reeling simulation. The pipe modelled was 312.1mm OD × 19.7mm WT SMLS 450 with a nominal 3.0mm thick Alloy 625 liner. An important validation work was performed to obtain a precise material response of the adhesive layer between liner and outer pipe. The adhesive mechanical properties were thus assessed in shearing and peeling over a range of temperatures covering all possible manufacturing and installation conditions. The model's elements and adhesive property modelling were validated against physical test results. Sensitivity analyses were done on the adhesive curing temperature, the geometry of the adhesive transition between the liner and the overlay weld at the pipe ends and on the liner thickness. The model was subjected to reeling simulation corresponding to Subsea 7's reel-lay vessels. The liner's integrity post reeling was assessed according to a range of acceptance criteria. These studies made it possible to establish parameter ranges for the safe installation of the linepipe.
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