首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >INSIGHTS IN THE APPLICATION OF STRUCTURAL RELIABILITY ANALYSIS (SRA) FOR CHALLENGING PIPELINE LATERAL BUCKLING DESIGN
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INSIGHTS IN THE APPLICATION OF STRUCTURAL RELIABILITY ANALYSIS (SRA) FOR CHALLENGING PIPELINE LATERAL BUCKLING DESIGN

机译:结构可靠性分析(SRA)在挑战管道横向屈曲设计中的应用见解

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Lateral buckling of pipelines is influenced by, and sensitive to, a complex combination of factors associated with considerable uncertainty. Key elements such as pipe to soil friction, vertical and horizontal imperfections can vary significantly not only along sections of the same pipeline, but at the same location over time. These factors carry a probabilistic likelihood of occurrence that results in a probabilistic distribution of buckle formation forces and locations, as well as post buckle loads, as described by Rathbone et. al. (2008). To effectively capture all possible combinations of inputs and results, and thus gain a full understanding of potential buckle behaviour and interaction, would require many individual finite element analyses to be undertaken, which is not viable. The paper describes new insights into challenging pipeline lateral buckling design gained through use of a highly adaptable Structural Reliability Analysis (SRA) method. It discusses the difficulties in defining pipeline and seabed complexities while still retaining adequate detail to fully describe the pipeline system. A range of realistic lateral buckling design scenarios will be discussed, illustrating how to reduce existing limitations in probabilistic design through the use of the SRA method. The method is flexible enough to enable varying levels of detail to be modelled, from simple idealised checks of buckling susceptibility, which are commonly performed during the early phases of design, to the more complex analysis of pipeline failure, performed during detailed design. The paper will demonstrate the ability for the method to capture complex real life scenarios such as the effect of a bi-modal distribution in observed pipeline embedment, as well as the influence of co-variance between frictions, on the probability of buckling and resulting strains.
机译:管道的横向屈曲受与不确定性有关的因素的复杂组合影响并对其敏感。关键因素(例如,管道与土壤的摩擦,垂直和水平缺陷)不仅会沿同一管道的各个部分,而且随着时间的推移在相同的位置也会发生很大的变化。如Rathbone等人所述,这些因素带有发生概率的可能性,该可能性导致带扣形成力和位置以及带扣后载荷的概率分布。 al。 (2008)。为了有效地捕获输入和结果的所有可能组合,从而全面了解潜在的扣环行为和相互作用,将需要进行许多单独的有限元分析,而这是不可行的。本文介绍了通过使用高度适应性的结构可靠性分析(SRA)方法获得的具有挑战性的管道横向屈曲设计的新见解。它讨论了定义管道和海底复杂性的困难,同时仍然保留了足够的细节来全面描述管道系统。将讨论一系列实际的横向屈曲设计方案,说明如何通过使用SRA方法减少概率设计中的现有限制。该方法具有足够的灵活性,可以对各种级别的细节进行建模,从通常在设计早期阶段执行的对屈曲敏感性的简单理想化检查,到在详细设计过程中进行的更复杂的管道故障分析。本文将展示该方法捕获复杂现实生活场景的能力,例如观察到的管道嵌入中的双峰分布的影响以及摩擦之间的协方差对屈曲概率和产生的应变的影响。

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