首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >MULTISCALE FINITE ELEMENT ANALYSIS OF UNBONDED FLEXIBLE RISERS
【24h】

MULTISCALE FINITE ELEMENT ANALYSIS OF UNBONDED FLEXIBLE RISERS

机译:无键柔性立管的多尺度有限元分析

获取原文

摘要

Unbonded exible risers are a key technology in existing and proposed offshore developments. With increasing water depth, the demands on risers increase and the design against hydrostatic and tension loads becomes more of a challenge. In addition, many existing subsea production systems are approaching the end of their design life and operators need to know if they can remain in-service. To enable the bene ts from deepwater production and life extension projects to be realized while minimizing risks to life, property and the environment, accurate modelling and analysis tools are required to improve the prediction of failure modes and to develop a better understanding of the conditions leading to progressive failure. In this work, a multi-scale approach is adopted whereby a global dynamic analysis model is employed to determine the overall displacements of the riser and this is linked with a local model that can provide accurate forces and stresses for the prediction of collapse, fatigue damage and buckling of tensile armour wires. Firstly, we describe a nonlinear constitutive model for use in large-scale dynamic analysis of exible risers based on an analytical homogenization of composite cylinders using the analogy between slip between pipe layers and plastic ow in continua. The model is able to reproduce the bending hysteresis behaviour observed in exible pipes and its dependence on internal and external pressure. Secondly, we show a procedure for obtaining equivalent material parameters for this model from nite element local analyses of a exible pipe. Finally, we show the implementation of this constitutive model in a riser system using two-dimensional co-rotational hybrid beam nite elements.
机译:无粘结活动立管是现有和拟议的海上开发中的一项关键技术。随着水深的增加,对立管的需求也增加了,抗静水压力和张力载荷的设计也变得更具挑战性。此外,许多现有的海底生产系统正接近其设计寿命,运营商需要知道它们是否可以继续使用。为了使深水生产和延寿项目的收益得以实现,同时最大程度地降低生命,财产和环境的风险,需要精确的建模和分析工具来改善对失效模式的预测并更好地了解导致破坏的条件进行性失败。在这项工作中,采用了多尺度方法,其中采用了全局动态分析模型来确定立管的整体位移,并且将其与可以为预测坍塌,疲劳破坏提供准确力和应力的局部模型联系在一起。和拉伸铠装线的屈曲。首先,我们描述了一种非线性本构模型,该模型用于柔性立管的大规模动态分析,该模型基于复合圆柱体的分析均质性,使用连续层之间的管层和塑料流之间的类比。该模型能够重现在挠性管中观察到的弯曲滞后行为及其对内部和外部压力的依赖性。其次,我们展示了一种从柔性管的有限元局部分析中获得该模型的等效材料参数的过程。最后,我们展示了本构模型在使用二维同向旋转混合梁有限元的立管系统中的实现。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号