首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >PIPE-SOIL INTERACTION DURING CYCLIC BUCKLING: THE IMPORTANCE OF SITE-SPECIFIC SEABED PROPERTIES
【24h】

PIPE-SOIL INTERACTION DURING CYCLIC BUCKLING: THE IMPORTANCE OF SITE-SPECIFIC SEABED PROPERTIES

机译:循环屈曲过程中的管-土相互作用:特定现场密封性能的重要性

获取原文

摘要

Knowledge of how an unburied pipeline interacts with the seabed during operational buckling is critical both to check the fatigue life of a pipeline in the buckling zone and to make accurate predictions of the pipeline end-expansions and walking. This paper explains how site-specific seabed conditions affect pipe-soil interaction (PSI) for buckling pipelines during their operational life. The paper first demonstrates that for many soil conditions, cyclic PSI models that only consider the 'berm push' resistance fail to capture all the key elements of the pipeline-seabed interaction during cyclic buckling. An additional mechanism associated with the changing pipeline trajectory which develops after many pipeline lateral movements ('sweeps') is identified. For some soil and pipeline conditions this second mechanism provides the main component of the seabed resistance after many operational cycles. Appropriate analysis methodologies are discussed which allow the 'berm-push' and trajectory mechanisms to be considered in light of soil conditions and pipeline input conditions. Secondly, published design approaches to assess cyclic PSI during buckling have typically assumed that the seabed around pipelines is not mobile (i.e. unscourable). However, in some situations, the combination of pipeline geometry, seabed properties and metocean conditions may lead to seabed scour around the pipeline and surrounding soil berms. This may therefore affect how the lateral soil resistance develops during the operational lifetime of a pipeline and should be considered in design. The paper discusses this issue, presenting results from CFD scour analyses of a particular berm geometry for different metocean conditions. The implications of berm scour on pipe-soil interaction for this geometry is explained.
机译:了解未埋管在屈曲过程中如何与海床相互作用的知识,对于检查屈曲区域中的管线疲劳寿命以及对管线的端部膨胀和走行做出准确的预测都是至关重要的。本文解释了特定地点的海床条件如何影响屈曲管线在其使用寿命内的管-土相互作用(PSI)。本文首先证明,在许多土壤条件下,仅考虑“堤坝推挤”阻力的循环PSI模型无法捕获循环屈曲过程中管道与海床相互作用的所有关键要素。确定了与管线轨迹变化相关的其他机制,该机制是在许多管线横向运动(“扫掠”)之后形成的。对于某些土壤和管道条件,在许多操作循环后,第二种机制提供了海床阻力的主要组成部分。讨论了适当的分析方法,这些方法允许根据土壤条件和管道输入条件来考虑“堤岸推”和轨迹机制。其次,公开的评估屈曲期间的循环PSI的设计方法通常假设管道周围的海床是不动的(即难以察觉)。但是,在某些情况下,管道几何形状,海床特性和海洋条件的结合可能会导致管道周围的海床冲刷和周围的土壤护堤。因此,这可能会影响在管道的使用寿命期间横向抗土性的发展方式,因此应在设计中加以考虑。本文讨论了这个问题,并提供了针对不同海洋条件下特定护堤几何形状的CFD冲刷分析结果。解释了冲刷对这种几何形状对管道-土壤相互作用的影响。

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