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Application of Chernoff bound to passive system reliability evaluation for probabilistic safety assessment of nuclear power plantsApplication of Chernoff bound to passive system reliability evaluation for probabilistic safety assessment of nuclear power plants

Authors
So, E.Kim, M.C.
Issue Date
Aug-2022
Publisher
Korean Nuclear Society
Keywords
Chernoff bound; Micro modular reactor; Nuclear power plant; Passive system; Probabilistic safety assessment
Citation
Nuclear Engineering and Technology, v.54, no.8, pp 2915 - 2923
Pages
9
Journal Title
Nuclear Engineering and Technology
Volume
54
Number
8
Start Page
2915
End Page
2923
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/57779
DOI
10.1016/j.net.2022.03.011
ISSN
1738-5733
Abstract
There is an increasing interest in passive safety systems to minimize the need for operator intervention or external power sources in nuclear power plants. Because a passive system has a weak driving force, there is greater uncertainty in the performance compared with an active system. In previous studies, several methods have been suggested to evaluate passive system reliability, and many of them estimated the failure probability using thermal–hydraulic analyses and the Monte Carlo method. However, if the functional failure of a passive system is rare, it is difficult to estimate the failure probability using conventional methods owing to their high computational time. In this paper, a procedure for the application of the Chernoff bound to the evaluation of passive system reliability is proposed. A feasibility study of the procedure was conducted on a passive decay heat removal system of a micro modular reactor in its conceptual design phase, and it was demonstrated that the passive system reliability can be evaluated without performing a large number of thermal–hydraulic analyses or Monte Carlo simulations when the system has a small failure probability. Accordingly, the advantages and constraints of applying the Chernoff bound for passive system reliability evaluation are discussed in this paper. © 2022 Korean Nuclear Society
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공과대학 (에너지시스템 공학부)
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