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Failure assessments of corroded pipelines with axial defects using stress-based criteria: Numerical studies and verification analyses

机译:使用基于应力的标准评估具有轴向缺陷的腐蚀管道的失效:数值研究和验证分析

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Conventional procedures used to assess the integrity of corroded piping systems with axial defects generally employ simplified failure criteria based upon a plastic collapse failure mechanism incorporating the tensile properties of the pipe material. These methods establish acceptance criteria for defects based on limited experimental data for low strength structural steels which do not necessarily address specific requirements for the high grade steels currently used. For these cases, failure assessments may be overly conservative or provide significant scatter in their predictions, which lead to unnecessary repair or replacement of in-service pipelines. Motivated by these observations, this study examines the applicability of a stress-based criterion based upon plastic instability analysis to predict the failure pressure of corroded pipelines with axial defects. A central focus is to gain additional insight into effects of defect geometry and material properties on the attainment of a local limit load to support the development of stress-based burst strength criteria. The work provides an extensive body of results which lend further support to adopt failure criteria for corroded pipelines based upon ligament instability analyses. A verification study conducted on burst testing of large-diameter pipe specimens with different defect length shows the effectiveness of a stress-based criterion using local ligament instability in burst pressure predictions, even though the adopted burst criterion exhibits a potential dependence on defect geometry and possibly on material's strain hardening capacity. Overall, the results presented here suggests that use of stress-based criteria based upon plastic instability analysis of the defect ligament is a valid engineering tool for integrity assessments of pipelines with axial corroded defects.
机译:用于评估具有轴向缺陷的腐蚀管道系统完整性的常规程序通常采用简化的破坏准则,该准则基于包含管道材料拉伸特性的塑性塌陷破坏机制。这些方法基于有限的低强度结构钢实验数据建立了缺陷的验收标准,这些数据不一定满足当前使用的高等级钢的特殊要求。对于这些情况,故障评估可能过于保守,或者在预测中分散很大,从而导致不必要的维修或更换运行中的管道。基于这些观察结果,本研究检查了基于塑性不稳定性分析的基于应力的准则的适用性,以预测具有轴向缺陷的腐蚀管道的破坏压力。中心重点是获得对缺陷几何形状和材料属性对达到局部极限载荷的影响的更多了解,以支持基于应力的爆破强度标准的发展。这项工作提供了广泛的结果,为基于韧带不稳定性分析的腐蚀管道采用破坏准则提供了进一步的支持。对具有不同缺陷长度的大口径管道试样进行爆破测试的验证研究表明,即使采用的爆破准则对缺陷的几何形状可能存在依赖性,也可能采用局部韧带不稳定性在爆破压力预测中基于应力的准则有效。材料的应变硬化能力。总体而言,此处给出的结果表明,基于缺陷韧带塑性不稳定性分析的基于应力的标准的使用是对具有轴向腐蚀缺陷的管道进行完整性评估的有效工程工具。

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