首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >EFFECTS OF GIRTH WELD ON THE LOCAL BUCKLING RESPONSE OF CONVENTIONAL GRADE PIPELINES
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EFFECTS OF GIRTH WELD ON THE LOCAL BUCKLING RESPONSE OF CONVENTIONAL GRADE PIPELINES

机译:环缝对常规梯度管道局部屈曲响应的影响

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Pipeline structural integrity is a critical component of pipeline design in extreme environmental conditions. Severe loads may be an issue in pipeline design if differential ground movement is prevalent in the design region, e.g. ground faulting and permafrost heave and settlement. Iceberg or ice keel interaction and large seabed deformations interacting may also be a critical design integrity issue for offshore pipelines in ice environments.Numerical finite element modelling procedures have been developed to assess the bending moment and strain capacity of several pipelines over various typical pipeline parameters. This study looks at the effects of girth-weld imperfection on the bending response of welded pipelines. Limited guidance is provided by pipeline design standards, for example DNV OS-F101 and CSA Z662, as to how to account for girth weld effects on the local buckling response. This paper investigates girth weld effects across a range of practical design parameters.Calibration of the numerical analysis was performed using available data, from full-scale tests and finite element analysis, for girth welded pipes in order to obtain confidence in the numerical procedure. The significance of girth weld effects was to reduce the peak bending moment capacity by 10% whereas strain capacity was reduced by as much as 35% based on the degree of girth weld imperfection. Girth weld effects have been acknowledged in industry, however, further research and physical testing is required to fully understand the problem, as shown in this paper.
机译:管道结构完整性是极端环境条件下管道设计的关键组成部分。如果设计区域普遍存在,则严重负载可能是管道设计中的问题,例如,如果设计区域普遍存在。地面断裂和永久冻土升降和结算。冰山或冰龙骨互动和大海底变形互动也可能是冰环境中海上管道的关键设计完整性问题。 已经开发了数值有限元建模程序,以在各种典型的管道参数上评估几个管道的弯矩和应变能力。本研究介绍了周围焊接缺陷对焊接管道弯曲响应的影响。管道设计标准提供有限的指导,例如DNV OS-F101和CSA Z662,以及如何考虑围绕局部屈曲响应的焊接效应。本文调查了一系列实用设计参数的围绕焊接效应。 使用可用数据进行数值分析的校准,从满量程测试和有限元分析,用于围绕焊接管道,以便在数值过程中获得置信度。周长焊缝效应的意义是将峰值弯曲力矩的能力降低10%,而应变能力根据周长焊缝缺陷程度降低35%。在工业中,周长焊接效应已被承认,需要进一步的研究和物理测试来充分了解该问题,如本文所示。

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