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Inexpensive Pipelines Health Evaluation Techniques Based on Resonance Determination, Numerical Simulation and Experimental Testing

机译:基于共振确定,数值模拟和实验测试的廉价管道健康评估技术

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摘要

In this paper, a non-destructive, reliable, and inexpensive vibration-based technique for evaluating Carbon steel pipes structure integrity. The proposed techniques allow a quick assessment of pipes structures at final pipe manufacturing stages and/or just before installation. A finite element modelling (FEM) using ABAQUS software was developed to determine the resonance mode of healthy Carbon steel pipe and a series of experiments were conducted to verify the outcomes of the modelling work. Consequently, the effects of quantified seeded faults, i.e., a 1 mm, 2 mm, 3 mm, and 4 mm diameter holes in the pipe wall on these resonance modes were determined using modelling work. A number of common used vibration analysis techniques were applied to detect and to evaluate the severity of those quantified faults. The amplitudes and frequencies of vibration signals were measured and compared. There were found to be in good agreement with the modelling work and provide important information on pipe construction condition and fault severity.
机译:本文采用一种无损,可靠且廉价的基于振动的技术来评估碳钢管结构的完整性。所提出的技术允许在最后的管道制造阶段和/或在安装之前快速评估管道结构。开发了使用ABAQUS软件的有限元建模(FEM),以确定健康的碳钢管的共振模式,并进行了一系列实验以验证建模工作的结果。因此,使用建模工作确定了量化的种子断层,即管壁上直径为1 mm,2 mm,3 mm和4 mm的孔对这些共振模式的影响。许多常用的振动分析技术被用于检测和评估那些量化故障的严重性。测量并比较了振动信号的幅度和频率。发现与建模工作非常吻合,并提供了有关管道构造条件和故障严重性的重要信息。

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