基于单因素或耦合因素建模的油气管道腐蚀数值模拟:综述

IF 4.2 3区 工程技术 Q2 ENERGY & FUELS
Chengtao Wang , Mostafa Fahmi Hassanein , Mengmeng Li
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引用次数: 1

摘要

数值模拟是评估工艺管道腐蚀状况和预测其剩余使用寿命的有效研究手段。这项工作包括对182篇学术论文的批判性回顾,以分析影响管道腐蚀过程的环境因素,腐蚀模拟的基本数值方法,以及单因素和耦合因素的数值研究。腐蚀管道的数值模拟可以结合电化学腐蚀过程和管道的结构特点,获得更准确的结果。基于多物理场的技术已经成功地应用于模拟杂散电流干扰下受两个或多个耦合因素影响的腐蚀管道的演化过程。通过与基于学习的算法集成,进行预测研究以评估腐蚀的发展。当前研究面临的挑战是,其余类型的腐蚀难以用数值方法描述。提出了改进管道腐蚀模拟模型的机会,以描述更多的腐蚀类型和真实的腐蚀形态,包括时变腐蚀模拟、模拟中的随机场和微电化学腐蚀模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of oil and gas pipeline corrosion based on single- or coupled-factor modeling: A critical review

Numerical simulation is an effective research approach to assess the condition and predict the remaining service life of process pipelines suffering corrosion hazards. This work comprises a critical review of 182 academic articles to analyze environmental factors affecting the pipeline corrosion process, basic numerical methods for corrosion simulation, and single- and coupled-factor numerical investigations. Numerical simulation of corroded pipelines could combine the electrochemical corrosion processes and structural characteristics of pipelines to obtain more accurate results. Multiphysics-based techniques have been successfully applied to simulate the evolution process of corroded pipelines affected by two or more coupled factors under stray current interference. Through integration with learning-based algorithms, predictive studies are conducted to assess the development of corrosion. The challenge for current research is that the remaining types of corrosion are difficult to describe by numerical methods. Opportunities are proposed to improve the pipeline corrosion simulation model to describe more corrosion types and realistic corrosion morphologies, including time-varying corrosion simulation, random field in the simulation, and microelectrochemical corrosion simulation.

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来源期刊
Natural Gas Industry B
Natural Gas Industry B Earth and Planetary Sciences-Geology
CiteScore
5.80
自引率
6.10%
发文量
46
审稿时长
79 days
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