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NDT APPLIED TO THE DETECTION OF DEFECTS IN OIL AND GAS PIPES: A SIMULATION-BASED STUDY

机译:NDT在石油和天然气管道缺陷检测中的应用:基于模拟的研究

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This research investigates the application of microwave nondestructive testing (NDT) to oil and gas pipe wall reductions (PWR) in manufacturing that are less than full-circumferential in extent. Pipes were modeled using Computer Simulation Technology (CST) simulation software, CST Microwave Studio holding pipe length, wall thickness, depth of PWR and configuration constant. The study looks at 32 models in order to determine sweeping frequency limitations for full-circumferential, half-circumferential, three-quarter-circumferential and quarter-circumferential extents of PWR with 8 widths ranging from 6.35mm to 50.8mm. The limitations were determined to be between the extremes. The 6.35mm width did not cause a resonance peak even with a full-circumferential PWR. The 50.8mm width produced a detectible resonance peak, but it is within the range established by the six middle widths.
机译:这项研究调查了微波无损检测(NDT)在制造中油气管道壁减少量(PWR)小于全周向的应用。使用计算机仿真技术(CST)模拟软件对管道进行建模,CST Microwave Studio保持管道的长度,壁厚,压水堆的深度和配置常数。这项研究研究了32个模型,以确定PWR全周,半周,四分之三周和四分之一周范围的扫描频率限制,其8个宽度范围为6.35mm至50.8mm。限制被确定为介于两个极端之间。即使采用全周向压水堆,6.35mm的宽度也不会引起共振峰。 50.8mm的宽度产生了可检测到的共振峰,但它在六个中间宽度确定的范围内。

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