DOE OSTI · 3023206
ON THE LANGUAGE OF RELIABILITY: A SYSTEM ENGINEER PERSPECTIVE
Abstract
In its classical definition, risk is defined by three elements: what can go wrong, what are its consequences and how likely is it to occur. While this definition makes sense in a regulatory based framework to estimate risk associated to power plants (in terms of core damage frequency and large early release frequency), this approach does not provide a useful snapshot of the health of the plant. A possible alternate path can start by redefining the word “risk” to a broader meaning that better reflects the needs of a system health and asset management decision making process. Rather than asking how likely an event can occur (in probabilistic terms), we can ask how far this event is from occurring. We will show how, given the data available from plant equipment reliability and monitoring/diagnostic/prognostic centers, a margin can be described and determined for all type of maintenance approaches (e.g., corrective or predictive maintenance). We will show how to link SSC margin-based reliability models to system reliability models (i.e., fault trees) in order to assess system/plant health and how to perform margin-based system calculations. These calculations are not solved using classical probabilistic calculations applied to sets (as performed by any PRA code) but, instead, through metric spaces operations (i.e., distance/margin based approach).
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Mandelli, Diego [Idaho National Laboratory] (ORCID:0000000293542233), Wang, Congjian [Idaho National Laboratory] (ORCID:0000000207789927), Hess, Steve [Jensen Hughes]. 2025-09-17. ON THE LANGUAGE OF RELIABILITY: A SYSTEM ENGINEER PERSPECTIVE. https://www.osti.gov/biblio/3023206
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