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Experimental Study of Interference Factors and Simulation on Oil-Gas Pipeline Magnetic Flux Leakage Density Signal

机译:油气管道漏磁密度信号干扰因素的实验研究与仿真

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摘要

Some methods of enhancing oil-gas pipeline magnetic flux leakage (MFL) detection technique are introduced in the paper. Some man-made defects or imperfections on the pipe surface are detected via the axial magnetization inspection vehicle along the pipeline. The magnetic dipole model of corrosion defect is stated and the important interference factors on magnetic flux leakage are analyzed. Finite element method is used to analyze and simulate normal defects on pipe surface, which can attribute to get natural defect MFL signal. The influence of benign pipeline artifacts (valves, welds, tees, flanges, etc.), pipe material and pipe wall, vehicle velocity, defect dimensions and interaction among defects, and so on are studied in detail. The magnetic flux leakage contour images or indication extraction maps are given and presented. These interference factors are compensated and solved. These approaches and results applied in the paper are contributed to the feature extraction and indication of pipeline abnormality. The results suggest that these approaches and conclusions are significantly effective for the pipeline magnetic flux leakage inspection.
机译:介绍了增强油气管道漏磁检测技术的几种方法。通过沿管道的轴向磁化检查车可以检测出管道表面上的一些人为缺陷或瑕疵。建立了腐蚀缺陷的磁偶极子模型,分析了影响磁通量泄漏的重要干扰因素。有限元法被用来分析和模拟管道表面的正常缺陷,这可以归因于获得自然缺陷的MFL信号。详细研究了良性管道伪影(阀门,焊缝,三通,法兰等),管道材料和管壁,车速,缺陷尺寸以及缺陷之间的相互作用等因素的影响。给出并给出了漏磁轮廓图或指示提取图。这些干扰因素得到补偿和解决。本文中应用的这些方法和结果有助于特征提取和管道异常指示。结果表明,这些方法和结论对管道漏磁检测具有显着的效果。

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