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Assessment model of pipe-soil interaction during large-amplitude lateral displacements for deep-water pipelines

机译:深水管道大幅度横向位移过程中管土相互作用评价模型

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The controlled buckling design of deep-water pipelines requires comprehensive understanding of pipe-soil interactions subject to large-amplitude lateral displacements. This paper explores this issue using a large displacement sequential limit analysis (SLA) method. The elevation of the pipe invert is kept constant during the lateral displacement to consider the situation when strong constraints from adjacent sections (e.g. intermittent rock dampers, anchors, etc.) are present and the validity of the numerical model is demonstrated by comparisons with five published high-quality centrifuge tests. Parametric studies on the effects of pipe embedment and strength profile are performed, leading to the development of analytical models to predict both lateral and vertical soil resistances during lateral displacement. The evolution of V-H yield envelopes, if presented in a normalised form, is found to be independent on the lateral displacement and can be satisfactorily captured by a binomial equation model.
机译:深水管道的可控屈曲设计要求全面了解受大振幅横向位移影响的管道与土壤的相互作用。本文使用大位移顺序极限分析(SLA)方法探讨了此问题。考虑到来自相邻断面的强约束(例如,间歇性的岩石阻尼器,锚等)存在约束的情况,并且通过与五个已发表的文献进行比较证明了数值模型的有效性,在侧向位移过程中,管道倒置的高程保持恒定。高质量的离心机测试。对管道埋入和强度分布的影响进行了参数研究,从而导致了分析模型的开发,以预测侧向位移期间的横向和纵向土壤阻力。如果以规范化形式表示,则V-H屈服包络线的演变与横向位移无关,并且可以通过二项式方程模型令人满意地捕获。

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