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ANALYTICAL APPROACH ON DYNAMIC TENSION OF FREE HANGING CONFIGURATION

机译:自由悬空构型动态张力的解析方法

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Free hanging is the most simple and basic model of a flexible riser, and has advantages in terms of low cost and easy operation, installation and maintenance compared to other configurations, such as Lazy-S or Steep-S. However, the dynamic motion of the top end has direct impact on the riser behavior near the touch down zone (TDZ) and causes axial compression. Since flexible pipe is vulnerable to axial compression, we usually adopt buffer configuration like Lazy-S or Steep-S. Some technical means have been made to reduce the axial compression of free hanging, such as non-uniform weight distribution for Steel Catenary Riser (SCR) and heavy material wrapping near TDZ for flexible pipe. Despite the achievements of such research, it is difficult to say that there is a systematic and comprehensive explication on how the parameters of dynamic motion or the configuration of pipe effect the dynamic tension of a riser. Linearized analysis in frequency domain with quite small number of lumped-mass model is discussed in this paper. The simplified linearized analytic solution support or modify empirical knowledge which parameter (weight in air or water, an angle of the riser against still water plane, the motion of the top end or added mass) effect dynamic minimum tension of the riser. The aim of this paper is to provide starting point of analytical approach and show its possibility. Most of the key parameters which are empirically known to estimate dynamic tension of the riser is driven from analytical model in this paper. Comprehensive numerical calculation by Orcaflex is performed to verify the assumptions and support the results.
机译:自由悬挂是挠性立管的最简单和最基本的模型,并且与其他配置(例如Lazy-S或Steep-S)相比,在低成本以及易于操作,安装和维护方面具有优势。但是,顶端的动态运动直接影响着陆区(TDZ)附近的立管行为,并导致轴向压缩。由于挠性管容易受到轴向压缩,因此我们通常采用诸如Lazy-S或Steep-S之类的缓冲配置。已经采取了一些技术手段来减少自由悬挂的轴向压缩,例如钢悬链提升器(SCR)的重量分布不均匀以及挠性管在TDZ附近包裹重物。尽管取得了这些研究的成就,但很难说关于动力运动的参数或管道的配置如何影响立管的动力张力有系统而全面的解释。本文讨论了具有少量集总质量模型的频域线性化分析。简化的线性分析解决方案支持或修改经验知识,该参数(空气或水中的重量,立管相对于静止水平面的角度,顶端的运动或增加的质量)会影响立管的动态最小张力。本文的目的是提供分析方法的起点并证明其可能性。根据经验,估计立管动态张力的大多数关键参数均由分析模型驱动。 Orcaflex进行了全面的数值计算,以验证假设并支持结果。

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