Development of probability of detection functions for evaluating integrity of axial outside diameter stress corrosion cracks in steam generator

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Abstract

The reliability of an eddy current testing (ECT) inspection system depends upon the inspection technique and quality of analyst. In evaluating the integrity of a steam generator (SG) tube, degradation detection and sizing accuracy are considered performance measures of the nondestructive evaluation (NDE) system. A probability of detection (POD) model serves as a functional measure of the ability of an NDE system to detect degradation. It is one of the inputs in the operational assessment, and it is used to estimate the degradation during service via ECT of the SG tube. In this study, the POD functions of the inspection technique and analyst were obtained to quantitatively analyze the ECT bobbin probe for axial outside diameter stress corrosion cracks in SG tubes. This should serve to evaluate the integrity of the SG tubes. The depth and amplitude of defects were used as parameters of the POD model. Hit (detection) and miss (no detection) binary data obtained from destructive and nondestructive inspection of cracked tubes were also used.

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Joo, K., & Hong, J. (2015). Development of probability of detection functions for evaluating integrity of axial outside diameter stress corrosion cracks in steam generator. Journal of Nuclear Science and Technology, 52(1), 63–69. https://doi.org/10.1080/00223131.2014.924884

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