首页> 外文会议>Computational Intelligence and Design, 2009. ISCID '09 >Magnetic Circuit Design Based on Circumferential Excitation in Oil-Gas Pipeline Magnetic Flux Leakage Detection
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Magnetic Circuit Design Based on Circumferential Excitation in Oil-Gas Pipeline Magnetic Flux Leakage Detection

机译:油气管道漏磁检测中基于周向励磁的磁路设计

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摘要

In the oil-gas pipeline magnetic flux leakage (MFL) detection, the qualitative and quantitative analysis can be achieved. The circumferential excitation technology is an effective way to detect or size axial direction of defects reliably; Magnetic circuit design has become the key part of this technology to meet the magnetized requirements of circumferential excitation. This paper studies the magnetized section of MFL detector of the oil pipeline. With combination of analytical method and magnetic segmentation method, the Kirchhoff magnetic equation was established with MATLAB to design a magnetic circuit calculation model. Take f325´8 pipeline as an example, calculations are carried out to choose suitable geometry parameters and material properties for magnetic circuit design. And simulation by large-scale finite element software ANSYS is carried out to verify the correctness of magnetic circuit design. It has been testified in the results that the design of magnetic circuit has completely met the requirements of circumferential magnetization.
机译:在油气管道漏磁检测中,可以进行定性和定量分析。圆周激励技术是一种可靠的检测缺陷尺寸或确定其轴向尺寸的有效方法。磁路设计已成为满足圆周激励磁化要求的这项技术的关键部分。本文研究了输油管道MFL检测器的磁化截面。结合解析法和磁分段法,利用MATLAB建立了基尔霍夫磁方程,设计了磁路计算模型。以f325´8管线为例,进行计算以选择合适的几何参数和材料特性以进行磁路设计。并通过大型有限元软件ANSYS进行仿真,验证了磁路设计的正确性。结果证明,磁路设计完全满足了圆周磁化的要求。

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