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Comparative studies for failure pressure prediction of corroded pipelines

机译:腐蚀管道故障压力预测的比较研究

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AbstractThe Finite Element (FE) Method is one of the most efficient approaches to quantify reliably the remaining strength of corroded pipes, by allowing the direct simulation of the physical phenomena involved in the failure of the pipe. In this paper, the results of failure pressure of corroded pipelines obtained using nonlinear FE analyses of the models generated by a computer system called PIPEFLAW will be presented. This system integrates several tools to automatically generate FE models and to perform FE analysis using a friendly interface. A set of cases considering colonies of idealized corroded defects is analyzed. The results are compared to experimental burst tests presented in the literature, numerical results obtained via FE models generated manually and results obtained using semi-empirical methods. The results obtained using the PIPEFLAW automatic and flexible procedures show good agreement with those given by handmade FE models and experimental tests. Some highly conservative predictions given by the semi-empirical methods are also observed.Graphical abstractDisplay OmittedHighlights?We describe semi-empirical methods to evaluate corroded pipe structural integrity.?We describe operation conditions used by the program to perform numerical analysis.?Some study cases of pipe models with idealized corrosion defects are presented.?Semi-empirical, experimental and numerical results are presented and discussed.]]>
机译:<![cdata [ 抽象 有限元(FE)方法是最有效的方法,可靠地量化腐蚀管的剩余强度,通过允许直接模拟管道故障所涉及的物理现象。在本文中,将呈现使用由计算机系统产生的模型的非线性FE分析所获得的腐蚀管道的失效压力结果。该系统集成了多个工具以自动生成FE模型,并使用友好界面执行FE分析。考虑考虑理想化的腐蚀缺陷菌落的一组病例被分析。将结果与文献中呈现的实验突发测试进行比较,通过手动产生的Fe模型获得的数值结果和使用半经验方法获得的结果。使用PIPEFLAW自动和柔性程序获得的结果与手工制造FE模型和实验测试提供的那些吻合良好。也观察到半实证方法给出的一些高度保守的预测。 图形抽象 省略显示 突出显示 我们描述半 - 评估腐蚀管结构完整性的杂页方法。 我们描述了程序执行的操作条件数值分析。 介绍了具有理想化腐蚀缺陷的管道模型的一些研究案例。 呈现和讨论的半实证,实验和数值结果。 < / CE:列表> ]]>

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