Pipe-soil interaction behaviors of deepwater J-lay pipeline on sloping seabed

IF 4.4 2区 工程技术 Q1 ENGINEERING, OCEAN
Pu Xu, Jixiang Zheng, Xiaohe Lai, Zhixin Du
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引用次数: 0

Abstract

The pipe-soil interaction behaviors are crucial factors for the J-lay pipeline design, which are mainly investigated on the horizontal seabed in previous studies. This paper develops an innovative method for the static and dynamic analyses of pipe-soil interactions considering the J-lay pipeline on a sloping seabed. This approach simulates the motion processes of the pipeline particles and solves the internal forces of the pipeline elements by the vector mechanics and finite element principle. The position coordinates formulations of pipeline particles are derived to calculate the pipeline locations on the sloping seabed. The non-linear hysteretic soil model and the modified Coulomb friction model are employed to simulate pipe-soil interactions in the vertical seabed plane as well as the axial and lateral directions. Moreover, a large-scale pipe-laying experimental test system is established to carry out the model experiments of a J-lay pipeline on different seabed conditions. The static and dynamic pipe-soil interaction responses are then analyzed by the VFIFE method for a 6-inch gas pipeline J-laying on the negative sloping seabed. The influence of seabed slope type and angle and soil characteristics is further explored on the pipe-soil interaction behaviors, which provide significant evidence for the design of pipe-lay on the sloping seabed.

倾斜海底深水j型管线管土相互作用特性
管土相互作用是J-lay管道设计的关键因素,以往的研究主要是在水平海床上进行研究。本文提出了一种考虑倾斜海底j层管道的管土相互作用静动力分析方法。该方法模拟管道粒子的运动过程,利用矢量力学和有限元原理求解管道单元的内力。推导了管道粒子的位置坐标公式,计算了管道在倾斜海床上的位置。采用非线性滞回土模型和修正库仑摩擦模型,模拟海底垂直平面、轴向和横向管土相互作用。建立了大型管道铺设试验测试系统,对J-lay管道在不同海底条件下进行了模型试验。采用VFIFE方法分析了负倾斜海床上6英寸j型输气管道的静、动力相互作用响应。进一步探讨了海底坡型、坡角和土体特性对管-土相互作用行为的影响,为倾斜海底管层的设计提供了重要依据。
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来源期刊
Applied Ocean Research
Applied Ocean Research 地学-工程:大洋
CiteScore
8.70
自引率
7.00%
发文量
316
审稿时长
59 days
期刊介绍: The aim of Applied Ocean Research is to encourage the submission of papers that advance the state of knowledge in a range of topics relevant to ocean engineering.
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