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一种用于外部腐蚀的X65燃气管道临界凹坑深度的半经验回归模型。

A Semi Empirical Regression Model for Critical Dent Depth of Externally Corroded X65 Gas Pipeline.

作者信息

Yang Yue, Liu Xiaoben, Yang Hong, Fang Weilun, Chen Pengchao, Li Rui, Gao Hui, Zhang Hong

机构信息

National Engineering Laboratory for Pipeline Safety/MOE Key Laboratory of Petroleum Engineering/Beijing Key Laboratory of Urban Oil and Gas Distribution Technology, China University of Petroleum-Beijing, Beijing 102249, China.

Beijing Key Laboratory of Pipeline Critical Technology and Equipment for Deepwater Oil & Gas Development, Beijing Institute of Petrochemical Technology, Beijing 102627, China.

出版信息

Materials (Basel). 2022 Aug 10;15(16):5492. doi: 10.3390/ma15165492.

Abstract

External corrosion dent is a common type of compound dent. On the one hand, this type of compound dent reduces the bearing area and bearing capacity of the pipeline. On the other hand, it leads to an increase in the stress-strain concentration in the dent and reduces the anti-fatigue load capacity of the pipeline, which is more harmful to the service safety of the pipeline than the simple dent. In this study, the reliability of the modeling method was verified by the numerical inversion of the full-size dented pipe test. A three-dimensional finite element model for a pipe with a small corrosion dent was established by analyzing the internal detection data on corrosion defects of pipes with a diameter of 813 mm. The failure criterion of the corrosion dent pipe and the calculation method of the critical dent depth were determined. The influence of corrosion depth, length, width, internal pressure load, curvature radius of indenter, and diameter-thickness pipeline ratio on critical dent depth was investigated. Finally, a critical dent-depth prediction formula was developed based on the numerical results. This study provides a reference and significant guidance for the applicability evaluation of corroded sunken pipelines.

摘要

外部腐蚀凹痕是复合凹痕的一种常见类型。一方面,这种复合凹痕会减小管道的承载面积和承载能力。另一方面,它会导致凹痕处应力应变集中增加,降低管道的抗疲劳载荷能力,这比单纯的凹痕对管道的服役安全危害更大。在本研究中,通过对全尺寸凹痕管道试验进行数值反演,验证了建模方法的可靠性。通过分析直径为813mm管道的腐蚀缺陷内部检测数据,建立了含小腐蚀凹痕管道的三维有限元模型。确定了腐蚀凹痕管道的失效准则和临界凹痕深度的计算方法。研究了腐蚀深度、长度、宽度、内压载荷、压头曲率半径和径厚比等对临界凹痕深度的影响。最后,根据数值结果建立了临界凹痕深度预测公式。本研究为腐蚀凹陷管道的适用性评价提供了参考和重要指导。

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