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首页> 外文期刊>The European physical journal. Applied physics >Assessment of the probability of failure for EC nondestructive testing based on intrusive spectral stochastic finite element method
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Assessment of the probability of failure for EC nondestructive testing based on intrusive spectral stochastic finite element method

机译:基于侵入谱随机有限元方法的EC无损检测失效概率评估

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摘要

This work is undertaken to study the reliability of eddy current nondestructive testing (ED-NDT) when the defect concerns a change of physical property of the material. So, an intrusive spectral stochastic finite element method (SSFEM) is developed in the case of 2D electromagnetic harmonic equation. The electrical conductivity is considered as random variable and is developed in series of Hermite polynomials. The developed model is validated from measurements on NDT device and is applied to the assessment of the reliability of failure in steam generator tubing of nuclear power plants. The exploitation of the model concerns the impedance calculation of the sensor and the assessment of the reliability of failure. The random defect geometry is also considered and results are given.
机译:当缺陷涉及材料物理特性的变化时,将开展这项工作来研究涡流无损检测(ED-NDT)的可靠性。因此,在二维电磁谐波方程的情况下,提出了一种侵入频谱随机有限元方法(SSFEM)。电导率被认为是随机变量,是由一系列Hermite多项式形成的。通过在无损检测设备上进行的测量验证了所开发的模型,并将该模型用于评估核电站蒸汽发生器管道故障的可靠性。该模型的开发涉及传感器的阻抗计算和故障可靠性的评估。还考虑了随机缺陷的几何形状并给出了结果。

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