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首页> 外文期刊>Ships and offshore structures >A refined analytical strain analysis method for offshore pipeline under strike-slip fault movement considering strain hardening effect of steel
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A refined analytical strain analysis method for offshore pipeline under strike-slip fault movement considering strain hardening effect of steel

机译:考虑钢的应变硬化效应的海上管道走滑断层运动的精细分析应变分析方法

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摘要

The rapid development of offshore oil and gas resources in recent years has led to a steadily growing importance of the safety of offshore pipelines. Active faults are some of the main geological hazards to which onshore and offshore pipelines may be subjected. In this study, an improved analytical method for estimating the strains in offshore pipelines subjected to strike-slip fault displacement was proposed. The pipe steel was considered as a linear strain hardening material and the soil constraint on pipe was considered as a series of elastic-plastic nonlinear soil springs. Explicit solutions for pipe elongation under fault displacements were derived and a high efficient iterative algorithm was proposed for accurately estimating the strains in the pipe. Better agreements with finite element results were obtained for the pipe strains derived using the proposed model when compared with the previous analytical method (i.e. Newmark method). This study is therefore considered to be a good reference for the design and safety evaluation of offshore pipelines crossing active faults.
机译:近年来,海上石油和天然气资源的快速发展已导致海上管道安全的重要性不断提高。活动断层是陆上和海上管道可能遭受的一些主要地质灾害。在这项研究中,提出了一种改进的分析方法,用于估算走滑断层位移引起的海上管道中的应变。管钢被视为线性应变硬化材料,管上的土壤约束被视为一系列弹塑性非线性土壤弹簧。推导了断层位移下管道伸长的显式解,并提出了一种高效的迭代算法来准确估算管道中的应变。与之前的分析方法(即Newmark方法)相比,使用该模型得出的管道应变获得了与有限元结果更好的一致性。因此,该研究被认为是穿越活动断层的海上管道设计和安全评估的良好参考。

著录项

  • 来源
    《Ships and offshore structures 》 |2020年第2期| 215-226| 共12页
  • 作者

  • 作者单位

    National Engineering Laboratory for Pipeline Safety/MOE Key Laboratory of Petroleum Engineering/Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum Beijing People's Republic of China Department of Civil and Environmental Engineering University of Alberta Edmonton Canada;

    National Engineering Laboratory for Pipeline Safety/MOE Key Laboratory of Petroleum Engineering/Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum Beijing People's Republic of China;

    Department of Civil and Environmental Engineering University of Alberta Edmonton Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Offshore pipeline; fault displacement; pipe-soil interaction; strain hardening model; analytical method;

    机译:离岸管道;断层位移管土相互作用应变硬化模型分析方法;

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