首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >Subsea Pipeline UHB Design - An Improved Analysis Approach
【24h】

Subsea Pipeline UHB Design - An Improved Analysis Approach

机译:海底管道UHB设计-改进的分析方法

获取原文

摘要

A subsea pipeline operating at temperature and pressure may buckle both vertically and laterally. For a trenched and buried pipeline, the propensity to upheaval buckling (UHB) is a major design concern. Predictive UHB design is typically required at the outset to determine both trenching and backfilling requirements. Additional rockdump schedule can be established by analysing post pipelay OOS survey data incorporating appropriate safety factors based on a structural reliability analysis. The normal approach is to examine the pipeline imperfection survey statistics and data accuracy. The structural reliability analysis and load factor calculation is typically performed a priori based on the assumed imperfections using the methodology outlined in ref. The additional rockdump schedule is derived from the crown of the pipeline imperfections regardless of adjacent profiles and overall backfill data. A new pseudo energy method for UHB and OOS is proposed and discussed in this paper based on the variational principle and modal analysis. The approach takes into account the effects of varying effective axial force, trench imperfections and vertical uplift resistance, by combining both axial friction and lateral resistance methods into a unified model. A new concept, effective uplift resistance and associated load is also introduced to deal with non-uniform backfill cover. Adjacent imperfections and backfill profiles are considered in detail. An FE model is developed to consist of 3-noded quadratic pipe elements using ABAQUS Ver 6.12 and iterations of FE analyses are performed to demonstrate the tangible benefits of the approach specifically for UHB OOS design in relation to target trenching and backfilling, leading to improved reliability and potential cost saving in UHB OOS design and rockdump installation.
机译:在温度和压力下运行的海底管道可能会在垂直方向和横向方向发生弯曲。对于开挖和掩埋的管道,动荡屈曲(UHB)的倾向是主要的设计关注点。通常,一开始就需要进行预测性UHB设计,以确定挖沟和回填的要求。可以通过在结构可靠性分析的基础上结合适当的安全因素来分析管道铺设后的OOS调查数据,从而建立其他的放岩进度表。通常的方法是检查管道缺陷调查的统计数据和数据准确性。结构可靠性分析和载荷系数计算通常使用参考文献中概述的方法基于假定的缺陷来进行先验。不管相邻的剖面和整个回填数据如何,额外的岩石转储计划都是从管道缺陷的顶部得出的。基于变分原理和模态分析,提出并讨论了一种用于UHB和OOS的新型伪能量方法。通过将轴向摩擦力和侧向阻力方法组合成一个统一的模型,该方法考虑了有效轴向力,沟槽缺陷和竖向抗拔力变化的影响。还引入了一个新概念,即有效的抗隆起力和相关的载荷,以应对不均匀的回填覆盖层。详细考虑了相邻的缺陷和回填轮廓。使用ABAQUS Ver 6.12开发了一个有限元模型,该模型由3节点二次管组成,并进行了有限元分析迭代,以证明该方法特别针对UHB OOS设计在目标挖沟和回填方面的实实在在的好处,从而提高了可靠性并节省了UHB OOS设计和转储安装的潜在成本。

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