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A FINITE MACRO-ELEMENT FOR CYLINDRICAL LAYER MODELING

机译:圆柱层建模的有限宏单元

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摘要

The offshore industry is in constant evolution due to the need of reach increasing water depths for new oil fields exploitation. In this scenario, not only new types of platforms are being designed, but also new types of risers, including flexible pipes and new umbilical cable configurations. The greatest difficulty to generate a new concept for a riser is to determine if it is viable or not. Flexible pipes and umbilical cables are complicated to model, due to the interactions between their layers and the large number of possible arrangements.To predict the behavior of flexible pipes and umbilical cables, adequate models are necessary. One can rely on finite element models, which show a great difficulty in mesh generation and convergence (specially due to the contact pairs). One can also rely on analytical models, which have many limitations due to simplifications (even though they are necessary). Another possible approach is to define macro elements, which represent a component, instead of classical finite elements (such as tetrahedric elements). Related to that approach, this paper presents a tubular element, which describes a cylinder with isotropic properties and can accept various sorts of loads. This element has its displacements and loads described using Fourier series and, for each term of the series, a solution is obtained. The effect is then superposed and the complete solution is obtained. This formulation is implemented and their results compared to those obtained by a classical finite clement modeling tool, with good agreement.
机译:由于需要增加水深来开发新油田,海上工业正在不断发展。在这种情况下,不仅要设计新型的平台,还要设计新型的立管,包括挠性管道和新的脐带缆配置。为立管产生新概念的最大困难是确定它是否可行。由于挠性管道和脐带缆的层之间的相互作用以及大量可能的布置,因此建模起来很复杂。 为了预测挠性管和脐带电缆的行为,需要足够的模型。可以依靠有限元模型,这在网格生成和收敛(特别是由于接触对)方面显示出很大的难度。人们也可以依靠分析模型,由于简化,分析模型有很多局限性(即使有必要)。另一种可能的方法是定义代表组件的宏元素,而不是经典的有限元素(例如四面体元素)。与该方法相关的是,本文介绍了一种管状元件,该元件描述了具有各向同性特性的圆柱体,可以承受各种载荷。使用傅立叶级数描述该单元的位移和载荷,并针对该级数的每个项获得解。然后叠加效果并获得完整的解决方案。该公式已实现,其结果与通过经典有限元建模工具获得的结果进行了比较,并具有良好的一致性。

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