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A NOVEL CONCEPT OF FLEXIBLE PIPE END FITTING: TENSILE ARMOR FOLDLESS ASSEMBLY

机译:柔性管端部装配的新概念:拉伸装甲无折叠组件

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The structural behavior of the flexible pipe tensile armors inside the end fitting (EF) is different from the one observed in the pipe body. The actual design methodology shows that the end fitting of the riser top section (at the interface with the floating unit) is critical with respect to fatigue, as stress concentration that occurs in this region during the end fitting assembly leading to significant plastic strains.Aiming at improving the structural performance of flexible risers, Petrobras designed and patented a novel concept of flexible pipe end fitting in which its assembly can be carried out without the need of folding the tensile armor thus avoiding the introduction of plastic strains and residual stresses in this layer.In order to assess and quantify the benefits of this new concept, in this work, a comparative study between the current end fitting concept used by the industry and the new technology proposed by Petrobras was conducted. This study comprises not only the stress distribution along the wire inside the end fitting but also the fatigue performance. For this purpose, finite element analyses have been carried out considering the entire end fitting mounting process and also the operational loads.These analyses were calibrated with results from midscale tests in which a longitudinal slice of the real end fitting was simulated. An instrumented tensile armor wire was embedded in the resin epoxy and pulled out from a test device.The results obtained show that the using of the proposed technology results in a considerably end fitting fatigue performance improvement.
机译:端部接头(EF)内的挠性管拉伸装甲的结构性能与在管体内观察到的不同。实际的设计方法表明,立管顶部的末端接头(在与浮动单元的界面处)对于疲劳至关重要,因为在末端接头组装期间该区域中出现的应力集中会导致明显的塑性应变。为了改善挠性立管的结构性能,Petrobras设计并获得了一种新颖概念的挠性管端接头的专利,该接头可在无需折叠抗拉铠装的情况下进行组装,从而避免在这一层引入塑性应变和残余应力为了评估和量化此新概念的好处,在这项工作中,对行业使用的当前端部装配概念与Petrobras提出的新技术进行了比较研究。这项研究不仅包括沿端部接头内部导线的应力分布,还包括疲劳性能。为此目的,已经考虑了整个端部接头安装过程以及操作载荷进行了有限元分析,这些分析是根据中等规模测试的结果进行校准的,其中模拟了真实端部接头的纵向切片。将一种仪器化的拉伸铠装线埋入树脂环氧树脂中并从测试设备中拉出。获得的结果表明,所提出的技术的使用大大改善了端部接头的疲劳性能。

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