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Finite Element Modeling and Quantification of Mechanical Damage Severity in Pipelines

机译:管道机械损伤严重程度的有限元建模与量化

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Mechanical damage is one of the major threats to oil and gas transmission pipeline integrity, which has been the case now for decades. Although much work has been done in that context, due to the complexity of its effects mechanical damage severity remains difficult to quantify. Thus, work continues to better understand the failure mechanism and develop the means to screen damage severity. The present paper adopts a validated elastic-plastic finite element analysis (FEA) model to simulate mechanical dents in pipelines and to quantify the effects of damage through a broad parametric study. This considers the need for three-dimensional FEA models and the effects of FEA element type, soil constraint condition, indenter type, pipeline grade and initial pipe pressure on dent response. The FEA model is also used to assess the minimum wall thickness for which a dent has the minimal effect on pipeline integrity. Finally, application of the proposed FEA model is illustrated by successfully predicting the failure behavior of a dent in a full-scale fatigue test involving a modern pipeline steel.
机译:机械损坏是对石油和天然气输送管道完整性的主要威胁之一,如今已经有几十年了。尽管在这种情况下已经做了很多工作,但是由于其影响的复杂性,机械损伤的严重性仍然难以量化。因此,工作将继续更好地理解故障机理,并开发出筛选损坏严重程度的方法。本文采用经过验证的弹塑性有限元分析(FEA)模型来模拟管道中的机械凹痕,并通过广泛的参数研究来量化损伤的影响。这考虑了对三维有限元分析模型的需求,以及有限元分析元素类型,土壤约束条件,压头类型,管道坡度和初始管道压力对凹痕响应的影响。 FEA模型还用于评估凹痕对管道完整性影响最小的最小壁厚。最后,通过成功预测涉及现代管线钢的全面疲劳试验中凹痕的失效行为,说明了所提出的FEA模型的应用。

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