scholarly journals Simulation Analysis of Magnetic Flux Leakage Detection Damage of Natural Gas Pipelines

2021 ◽  
Vol 804 (2) ◽  
pp. 022107
Author(s):  
Bing Hu ◽  
Ning Zhang ◽  
Lu Wang ◽  
Penglong Lin ◽  
Lei Xu
Author(s):  
Dylan Davis ◽  
Robert Zazuliak ◽  
Stephen Westwood

TransCanada owns and operates more than 91,500km of natural gas pipelines in North America and since 2014 they’ve been aggressively pursuing the assessment of the unpigged portion of their system. To expand the In-Line Inspection coverage in the system TransCanada identified the need to develop a bi-directional caliper tool. This development allowed TransCanada to attain both Magnetic Flux Leakage and Caliper data while reducing the overall cost of its multi-year baseline assessment program. This paper will discuss the technical features of the bi-directional caliper tool and an overview of the model used by TransCanada which drove the development of the bi-directional caliper technology and to demonstrate the advantages of utilizing unconventional In Line Inspection technology in order to obtain MFL and Caliper data.


2014 ◽  
Vol 599-601 ◽  
pp. 321-325
Author(s):  
Li Qiang Sun ◽  
Hong Bo Zhu ◽  
Ming Xie ◽  
Ji Xia Li

In view of the petroleum and petrochemical characteristics of horizontal tank, ANSYS software of finite element analysis was carried out on the horizontal tank within the magnetic flux leakage testing, analyzes the influencing factors of defect magnetic flux leakage signals. Experiments verify the finite element analysis results, the experimental results show that the research of horizontal tank within the magnetic flux leakage detection effect is obvious.


Author(s):  
Xiaolong Li ◽  
Renyang He ◽  
Tao Meng ◽  
Shimin Zhang

Caliper pigs are widely used for measuring pipeline internal geometry and detecting anomalies, such as dents, wrinkles and flat spots. Due to its excellent transport capacity, caliper pig is more widely used in subsea gas pipelines than smart pig, such as Magnetic Flux Leakage (MFL) pig or Ultrasonic Test (UT) pig. In this article, the bouncing process of detection arm of caliper pig across convex defect is studied. And then, the influence of the collision between the detection arm and deformation defect, as well as the defect shape on the bounce, is discussed. Based on that, a bouncing theoretical model of the detection arm is developed for analyzing the bouncing phenomenon. Furthermore,the bouncing process that the detection arm moves across the convex defect with different velocities and different initial spring forces is studied by experimental method. The bouncing model calculation value is approximately equal with the experimental value, verifying the validity of the bouncing model. The bouncing model has a great significance for caliper pig evaluating the pipeline convex defect.


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