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Finite element analyses of corroded pipeline with single defect subjected to internal pressure and axial compressive stress

机译:内压和轴向抗压应力的单缺陷腐蚀管道的有限元分析

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This paper describes the application of finite element method (FEM) and the development of equations to predict the failure pressure of single corrosion affected pipes subjected to internal pressure and axial compressive stress. The finite element analysis (FEA) results were verified against full-scale burst tests and theoretical calculations. Material non-linearity, which allow for large strains and displacements, were considered. In addition, true UTS instead of engineering UTS was used to determine the point of failure. The pipes used in the FEA was modelled based on API 5L X52 modified steel with a length of 2000 mm, a nominal outer diameter of 300 mm, and a nominal wall thickness of 10 mm. The results obtained from FEA were compared to that of existing comprehensive corrosion assessment method, known as DNV-RP-F101. Six equations, utilizing the Buckingham's pi theorem and multivariate non-linear regression techniques, were developed for predicting the failure pressure of corroded pipeline with single defect subjected to both internal pressure and axial compressive stress. These equations provide improved failure pressure predictions with good margins of errors (less than 10%).
机译:本文介绍了有限元方法(FEM)的应用和方程的发展,以预测受到内部压力和轴向压缩应力的单腐蚀影响管的失效压力。有限元分析(FEA)结果针对满量程突发测试和理论计算。考虑了允许大型菌株和位移的材料非线性。此外,真正的UTS而不是工程UTS用于确定故障点。基于FEA中使用的管道基于API 5L X52改性钢,长度为2000毫米,标称外径为300mm,标称壁厚10mm。将从FEA获得的结果与现有的综合腐蚀评估方法进行了比较,称为DNV-RP-F101。利用白金汉的PI定理和多变量非线性回归技术的六方程被开发用于预测腐蚀管道的失效压力,其具有内部压力和轴向压缩应力的单一缺陷。这些方程提供了具有良好误差边缘(小于10%)的改善的失效压力预测。

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