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Development of Finite Element Based Defect Assessment Method for Gas Pipelines subject to Operating Condition Changes

机译:基于有限元的缺陷评估方法的缺陷评估方法,其经营条件发生变化

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Assessment methodology of structural integrity of gas pipeline is very important. For assessment of gas pipeline, many tests under various conditions have to be done. But test of real gas pipe is very dangerous and expensive. The objectives of this study are to develop micro-mechanical model for assessment of structural integrity of natural gas pipeline and develop damage model for assessment of defects in pipeline. We developed phenomenological damage simulation method for assessment of failure of natural gas pipeline, and developed user-subroutines in ABAQUS for implementation. This paper proposes a new method to simulate ductile failure using finite element analysis based on the stress-modified fracture strain model. A procedure is given to determine the stress-modified fracture strain as a function of the stress triaxiality from smooth and notched bar tensile tests with FE analyses. For validation, simulated results using the proposed method are compared with experimental data for cracked bar (tensile and bend) tests, extracted from API X65 pipes, and for full-scale burst test of gouged pipes, showing overall good agreements. Advantages in the use of the proposed method for practical structural integrity assessment of natural gas pipeline are discussed.
机译:气体管道结构完整性评估方法非常重要。为了评估天然气管道,必须在各种条件下进行许多测试。但是真正的气体管道的测试非常危险和昂贵。本研究的目标是开发微机械模型,用于评估天然气管道的结构完整性,并对管道缺陷进行评估产生损伤模型。我们开发了用于评估天然气管道失败的现象损伤模拟方法,以及在ABAQUS中开发的用户子程序进行实施。本文提出了一种使用基于应力改性断裂应变模型的有限元分析模拟延展性故障的新方法。给出一种方法以确定应力修饰的裂缝应变,作为与Fe分析的光滑和缺口条拉伸试验的应力三轴性的函数。对于验证,使用所提出的方法的模拟结果与裂缝棒(拉伸和弯曲)试验的实验数据进行比较,从API X65管道中提取,以及用于凿管的全刻度突发测试,显示出整体良好的协议。讨论了利用所提出的实际结构完整性评估天然气管道的方法。

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