首页> 外文会议>International pipeline conference >AN EVALUATION PROCEDURE FOR CRACK DRIVING FORCES IN MISMATCHED WELDS AND ITS APPLICABILITY TO ECA ANALYSIS OF UNDERMATCHED CLAD PIPE GIRTH WELDS
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AN EVALUATION PROCEDURE FOR CRACK DRIVING FORCES IN MISMATCHED WELDS AND ITS APPLICABILITY TO ECA ANALYSIS OF UNDERMATCHED CLAD PIPE GIRTH WELDS

机译:错位焊缝裂纹驱动力的评估程序及其在未包埋的垫层管焊缝的ECA分析中的应用

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Structural integrity of submarine risers and flow lines transporting corrosive and aggressive hydrocarbons represents a key factor in operational safety of subsea pipelines. Advances in existing technologies favor the use of C-Mn steel pipelines (for example, API X65 grade steel) either clad or mechanically lined with a corrosion resistant alloy (CRA), such as Alloy 625, for the transport of corrosive hydrocarbons. However, while cost effective, specification of critical flaw sizes for their girth welds become more complex due to the dissimilar nature of these materials. In particular, effective fracture assessments of undermatched girth welds remain essential to determine more accurate acceptable flaw sizes for the piping system based upon engineering critical assessment (ECA) procedures. This work focuses on development of an evaluation procedure for the elastic-plastic crack driving force (as characterized by the J-integral) in pipeline girth welds with circumferential surface cracks subjected to bending load for a wide range of crack geometries and weld mismatch levels based upon the GE-EPRI framework. The study also addresses the effects of an undermatching girth weld on critical flaw sizes for a typical clad pipe employed in subsea flowlines having an Alloy 625 girth weld. The extensive 3-D numerical analyses provide a large set of solutions for J in cracked pipes and cylinders with mismatched girth welds while, at the same time, gaining additional understanding of the applicability of ECA procedures in welded cracked structural components.
机译:输送腐蚀性和腐蚀性碳氢化合物的海底立管和流水线的结构完整性是海底管道运行安全的关键因素。现有技术的进步有利于使用C-Mn钢管道(例如API X65级钢)包覆或机械衬有耐腐蚀合金(CRA)(例如625合金)来输送腐蚀性碳氢化合物。但是,尽管具有成本效益,但由于这些材料的性质不同,其环焊缝的关键缺陷尺寸的规范变得更加复杂。特别是,对不匹配的环缝焊缝进行有效的断裂评估对于根据工程关键评估(ECA)程序确定更准确的管道系统可接受的缺陷尺寸仍然至关重要。这项工作着重于开发一种评估程序,该程序用于在圆周表面裂纹承受弯曲载荷的管道环缝焊缝中的塑性-塑性裂纹驱动力(以J积分为特征),基于各种裂纹几何形状和焊缝失配水平,基于GE-EPRI框架。该研究还解决了环缝焊缝不匹配对具有625环缝焊缝的海底流水线中使用的典型复合管的关键缺陷尺寸的影响。广泛的3-D数值分析为周向焊缝不匹配的裂纹管和圆柱体中的J提供了大量解决方案,与此同时,进一步了解了ECA程序在焊接裂纹结构部件中的适用性。

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