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Numerical solutions for nonlinear large deformation behaviour of deepwater steel lazy-wave riser

机译:深水钢懒波立管非线性大变形行为的数值解

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To meet the increasing challenges of simple steel catenary riser on large hang-off tension and fatigue damage of the touchdown point (TDP) in deepwater or ultra deepwater applications, the steel lazy-wave risers (SLWR) have gained a viable solution. This paper is focused on the static equilibrium of SLWR which is of great importance to the basic configuration design of the riser. A more accurate model based on nonlinear large deformation beam theory is proposed to simulate the suspended part of SLWR, having evident advantage over previously applied small deformation beam or catenary theory which ignores the riser's bending stiffness and is hard to simulate the rapid change of the inclination angle. The model also deals with the pipe-soil interaction for simulating the TDP. The finite difference method is applied to obtain the numerical solutions. The results are comparatively in agreement with OrcaFlex. As an application, parametric analysis of the SLWR is carried out to investigate the influences of arc length of buoyancy section, arc length of upper section and soil stiffness on the static performance. The proposed model can be a basic reference for the dynamic analysis of the deepwater SLWR.
机译:为了解决简单的悬链式钢立管在深水或超深水应用中对大悬垂张力和着陆点(TDP)的疲劳破坏提出的日益严峻的挑战,钢制懒人立管(SLWR)已获得了可行的解决方案。本文主要关注SLWR的静态平衡,这对于立管的基本配置设计非常重要。提出了一种基于非线性大变形梁理论的更精确的模型,以模拟SLWR的悬吊部分,与先前应用的小变形梁或悬链线理论相比,后者忽略了立管的弯曲刚度,并且难以模拟倾角的快速变化,具有明显的优势。角度。该模型还处理管-土相互作用以模拟TDP。应用有限差分法获得数值解。结果与OrcaFlex比较一致。作为一种应用,对SLWR进行了参数分析,以研究浮力段弧长,上部弧长和土体刚度对静态性能的影响。该模型可以为深水SLWR的动力分析提供基础参考。

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