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A NEW ANALYTICAL EXPRESSION TO ESTIMATE THE BENDING STIFFNESS OF FLEXIBLE RISERS

机译:一种新的分析表达来估计柔性立管的弯曲刚度

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摘要

Flexible risers are complex structures used in offshore oil exploitation activities. Such structures are composed of several concentric polymeric and steel armour layers which withstand static and dynamic loads applied by the floating production vessel and by the ocean environment. Determining the equivalent flexural stiffness of such structures is an important task for the global structural analysis, since it provides a probable value that can be used in this analysis to predict the load distribution along the line (that is important in critical regions such as the TDP and the top). Besides that, estimates for the flexural stiffness are also important for predicting instabilities in the line (loop formation). However, the complexity imposed mainly by geometry and contact conditions renders a finite element analysis of these structures practically unfeasible, even considering that all the materials obey a linear elastic behaviour. So, in order to achieve this task, analytical methods have been proved to be, till now, a better choice. The aim of this work is to present the basis of a new analytical equation to estimate the flexural structural behaviour of flexible risers. Emphasis is given on the geometrical analysis of armour layers.
机译:柔性立管是在海上石​​油开发活动中使用的复杂结构。这种结构由几个同心聚合物和钢制铠装层构成,其耐受浮动生产容器和海洋环境施加的静态和动态载荷。确定这种结构的等效弯曲刚度是全局结构分析的重要任务,因为它提供了可以在该分析中使用的可能值来预测沿线的负载分布(这在诸如TDP的关键区域中很重要和顶部)。除此之外,弯曲刚度的估计对于预测线路中的不稳定性也很重要(环形形成)。然而,主要由几何形状和接触条件施加的复杂性使得这些结构的有限元分析实际上是不可行的,甚至考虑到所有材料遵循线性弹性行为。因此,为了实现这项任务,已经证明了分析方法是,直到现在,更好的选择。这项工作的目的是介绍一种新的分析方程来估算柔性立管的弯曲结构行为。对装甲层的几何分析给出了重点。

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