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首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Time Domain Simulation of the 3D Bending Hysteresis Behavior of an Unbonded Flexible Riser
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Time Domain Simulation of the 3D Bending Hysteresis Behavior of an Unbonded Flexible Riser

机译:无粘结挠性提升管的3D弯曲滞后行为的时域仿真

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摘要

This paper presents a "state-of-the-art" development in time domain dynamic simulation of 3D bending hysteresis behavior of a flexible riser under offshore environment loading. The main technical challenge is to understand and model the riser tensile armor behavior under continuous changes in both the magnitude and direction of bending, and its subsequent impact on the riser's bending hysteresis characteristics. On account of this technical obstacle, the current industry practice is to model the riser as a linear structure, with certain conservatism enforced, and then to extract the global dynamic loads to a detailed local model for stress and life assessment. Two 3D flexible riser bending hysteresis models developed by Wellstream and Orcina are introduced in this paper, with their calibrations against the bending hysteresis loops measured in full scale tests. Both models are implemented using the analysis program ORCAFLEX. The Wellstream model is a detailed model that calculates both the total bending moment and the stresses in the tensile armor, whereas the Orcina model is a simpler model that only calculates the total bending moment. The study presented illustrates the difference in riser dynamic responses with and without consideration of the bending hysteresis behavior and assesses the difference in dynamic responses between the Wellstream and Orcina 3D bending hysteresis models. This development permits the modeling of more realistic riser structural properties in the dynamic simulation and reports detailed time history stress or strain results for strength components of the riser, and so expands the current practice of riser fatigue analysis, which uses the regular wave approach only, to using an irregular wave approach employing the rainflow counting method.
机译:本文提出了在海上环境载荷下柔性立管的3D弯曲滞后行为的时域动态仿真中的“最新技术”进展。主要的技术挑战是在弯曲幅度和方向连续变化及其后续对立管弯曲滞后特性的影响下,了解立管抗张装甲行为并对其建模。由于这一技术障碍,当前的行业惯例是将立管建模为线性结构,并实施一定的保守性,然后将全局动态载荷提取到详细的局部模型中,以进行应力和寿命评估。本文介绍了Wellstream和Orcina开发的两个3D柔性立管弯曲滞后模型,它们针对在满量程测试中测量的弯曲滞后回线进行了校准。两种模型都使用分析程序ORCAFLEX实施。 Wellstream模型是一个详细模型,可同时计算总弯矩和拉伸装甲中的应力,而Orcina模型是更简单的模型,仅计算总弯矩。提出的研究说明了在不考虑弯曲滞后行为的情况下立管动态响应的差异,并评估了Wellstream和Orcina 3D弯曲滞后模型之间的动态响应差异。这项进展允许在动态模拟中对更实际的立管结构特性进行建模,并报告立管强度分量的详细时程应力或应变结果,从而扩展了目前仅使用规则波方法的立管疲劳分析的实践,使用采用雨流计数方法的不规则波方法。

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  • 作者单位

    Wellstream International Ltd., 11210 Equity Drive, Suite 350, Houston, TX 77041;

    Orcina Ltd., Daltongate, Ulverston, Cumbria, LA12 7AJ, UK;

    Wellstream International Ltd., Wellstream House, Wincomblee Road, Newcastle upon Tyne, NE6 3PF, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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