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Numerical model for steel catenary riser on seafloor support

机译:海底支架钢悬链立管的数值模型

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摘要

Realistic predictions of service life of steel catenary risers (SCR) require an accurate characterization of seafloor stiffness in the region where the riser contacts the seafloor, the so-called touchdown zone. This thesis presents the initial stage of development of a simplified seafloor support model. This model simulates the seafloor-pipe interaction as a flexible pipe supported on a bed of springs. Constants for the soil springs were derived from finite element studies performed in a separate, parallel investigation. These supports are comprised of elasto-plastic springs with spring constants being a function of soil stiffness and strength, and the geometry of the trench within the touchdown zone. Deflections and bending stresses in the pipe are computed based on a finite element method and a finite difference formulation developed in this research project. The finite difference algorithm has capabilities for analyzing linear springs, non-linear springs, and springs having a tension cut-off. The latter feature simulates the effect of a pipe pulling out of contact with the soil. The model is used to perform parametric studies to assess the effects of soil stiffness, soil strength, trench geometry, amplitude of pipe displacements, pipe stiffness, and length of touchdown zone on pipe deflections and bending stresses. In conclusions, the seafloor stiffness (as characterized by the three spring parameters), the magnitude of pipe displacement, and the length of the touchdown zone all influence bending stresses in the pipe. Also, the tension cutoff effect, i.e., the pipe pulling away from the soil, can have a very large effect on bending stresses in the pipe. Neglecting this effect can lead to serious over-estimate of stress levels and excessive conservatism in design.
机译:对钢悬链立管(SCR)使用寿命的现实预测要求在立管与海底接触的区域(即所谓的着陆区)中准确表征海底刚度。本文提出了简化海底支撑模型开发的初期阶段。该模型将海底管相互作用模拟为支撑在弹簧床上的柔性管。土壤弹簧的常数来自于单独的并行研究中进行的有限元研究。这些支架由弹塑性弹簧组成,弹簧常数是土壤刚度和强度以及触地区内沟槽的几何形状的函数。基于该研究项目开发的有限元方法和有限差分公式,计算了管道中的挠曲和弯曲应力。有限差分算法具有分析线性弹簧,非线性弹簧和具有张力截止的弹簧的功能。后一个功能模拟管道脱离土壤接触的效果。该模型用于进行参数研究,以评估土壤刚度,土壤强度,沟槽几何形状,管道位移幅度,管道刚度以及接地区域长度对管道挠度和弯曲应力的影响。总之,海底刚度(由三个弹簧参数表征),管道位移的大小以及接地区域的长度都会影响管道的弯曲应力。同样,张力截断效果,即管子从土壤中拉出,对管子的弯曲应力可能有很大的影响。忽略这种影响可能导致严重高估应力水平,并在设计中过度保守。

著录项

  • 作者

    You Jung Hwan;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en_US
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