DOE OSTI · 1962058
A physics-based parametric regression approach for feedwater pump system diagnosis
Abstract
Here in this paper, we assessed the performance of a model-based approach for fault diagnosis of a nuclear power plant feedwater pump system. Physics-based models were constructed to monitor the performance of the system components. Plant data were used for the calibration of the models and subsequently in the diagnosis of abnormal events. We considered two real-time events representing scenarios of a pump fault and component performance degradation. The two events were correctly diagnosed, and the results demonstrated the high detection sensitivity of the physics-based models. Various sensor fault scenarios were simulated to show the capability of the approach to detect and uniquely identify sensor faults. Results for a scenario in which the plant operated in flexible power mode also showed that the diagnostic approach is insensitive to changes of operating conditions, which is one of the advantages of the model-based approach using physics-based models over purely data-driven approach.
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Nguyen, Tat Nghia, Ponciroli, Roberto, Kibler, Timothy, Anderson, Marc, Strasser, Molly J., Vilim, Richard B.. 2021-09-29. A physics-based parametric regression approach for feedwater pump system diagnosis. https://doi.org/10.1016/j.anucene.2021.108692
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