Cross-Sectional Design and Case Study for Flexible Pipe

Q. Zuo, L. Ali, Yong Bai
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Abstract

Flexible pipes are compounded by many concentric layers, with different structural and operational functions. These layers are usually made of distinct materials, including metal and plastic. To accurately meet the working requirements of the pipes and reduce its production cost, the primary purpose of this paper is to present the cross-sectional design procedure and the case study for a specific unbonded flexible pipe is also illustrated. In this paper, the mathematical analysis and finite element analysis are employed to study the properties of pipe under different working conditions. A theoretical model for stresses and deformations of the pipe have been studied, and the obtained results have been compared with the ones from the FEM which is used to simulate the pipe under different working conditions. Additionally, the several models will be developed to study mechanical responses of pipes subjected to several loads. The results and FEA models can be useful for the designing structure of flexible pipes.
柔性管道的截面设计与实例研究
柔性管道是由许多同心层复合而成,具有不同的结构和操作功能。这些层通常由不同的材料制成,包括金属和塑料。为了准确地满足管道的工作要求,降低其生产成本,本文的主要目的是提出截面设计方法,并对具体的无粘结柔性管进行了实例分析。本文采用数学分析和有限元分析相结合的方法研究了不同工况下管道的性能。建立了管材应力和变形的理论模型,并与不同工况下管材的有限元模拟结果进行了比较。此外,还将开发几种模型来研究管道在几种载荷作用下的力学响应。研究结果和有限元模型可为柔性管道结构设计提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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