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首页> 外文期刊>Journal of Pipeline Systems Engineering and Practice >Finite-Element Analysis of the Installation Process of a Novel Corrosion Protective Kevlar-Reinforced Flexible Composite Liner
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Finite-Element Analysis of the Installation Process of a Novel Corrosion Protective Kevlar-Reinforced Flexible Composite Liner

机译:新型防腐蚀凯夫拉增强柔性复合内衬安装过程的有限元分析

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摘要

Internal corrosion in pipelines is a persistent problem in the oil and gas industry. Available conventional rehabilitation techniques to stop corrosion losses and prolong the life of the pipeline use an internal lining system to isolate the corrosive medium from the host pipe's inner surface. To overcome many of the shortcomings associated with conventional lining technologies, a Kevlar-reinforced flexible polymer composite liner has been recently developed. This flexible liner was installed in several stages and is of interest in understanding the mechanisms behind the installation process and, more specifically, in determining the forces and stresses at each stage of the installation process. Hence, the objective of the current study is to build a nonlinear finite element (FE) model to simulate the full installation process of this new liner. The FE model is further validated using physical tests, making it a reliable tool for simulating the entire installation process of this liner in an arbitrary pipeline network. (C) 2018 American Society of Civil Engineers.
机译:在石油和天然气工业中,管道的内部腐蚀是一个持续存在的问题。可用的常规修复技术可防止腐蚀损失并延长管道寿命,它使用内部衬里系统将腐蚀性介质与主管的内表面隔离开。为了克服与传统衬里技术相关的许多缺点,最近开发了一种凯夫拉尔增强的柔性聚合物复合衬里。这种柔性衬管的安装过程分几个阶段进行,对理解安装过程背后的机制,尤其是确定安装过程每个阶段的作用力和应力感兴趣。因此,本研究的目的是建立一个非线性有限元(FE)模型来模拟这种新衬管的完整安装过程。 FE模型通过物理测试得到了进一步验证,使其成为模拟此衬套在任意管道网络中的整个安装过程的可靠工具。 (C)2018美国土木工程师学会。

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