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Low Frequency Electromagnetic Testing for Evaluating Wall Thinning in Carbon Steel Pipe

机译:碳钢管中壁稀土的低频电磁试验

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This study proposes an inverse algorithm to evaluate the depth of full circumferential wall thinning from low-frequency electromagnetic field signals. Finite element simulations were performed and revealed that normalizing the magnetic fields enabled the elimination of the effects of the length and the position of wall thinning and the dimensions of the pipe under test. Subsequently, this study attempted to evaluate the residual wall thickness on the basis of the maximum normalized magnetic field using Gaussian process regression. Forty-eight signals obtained by numerical simulations were used to develop a regression model. Eighteen further signals obtained by numerical simulations and nine signals obtained by experiments using a carbon steel pipe (diameter 101.6 mm and thickness 5.7 mm) were used for validation. The root mean squared error of the validation was 0.07 mm for the simulated signals and 0.23 mm for the signals obtained by the experiment. The 95% confidence intervals of the predictions, which would contribute to probabilistic risk analysis, were approximately 0.5 mm.
机译:本研究提出了一种逆算法来评估从低频电磁场信号进行全周向壁的深度。执行有限元模拟,并揭示了磁场使磁场的归一化能够消除壁稀释的长度和位置的效果以及被测管道的尺寸。随后,该研究试图基于使用高斯工艺回归的最大归一化磁场来评估剩余壁厚。通过数值模拟获得的四十八个信号用于开发回归模型。通过使用碳钢管(直径101.6mm和厚度为5.7mm)的数值模拟和通过实验获得的九个信号获得的十八个进一步的信号用于验证。对于模拟信号的验证的根平均平方误差为0.07mm,并且通过实验获得的信号为0.23mm。预测的95%置信区间将有助于概率风险分析,约为0.5毫米。

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