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Variability of plant risk due to variable operator allowable time for aggressive cooldown initiation

Authors
Kim, M.C.Han, S.H.
Issue Date
Aug-2019
Publisher
Korean Nuclear Society
Keywords
Aggressive cooldown; Core damage frequency; Emergency operating procedures; Importance measures; Plant risk; Probabilistic safety assessment; Rapid depressurization
Citation
Nuclear Engineering and Technology, v.51, no.5, pp 1307 - 1313
Pages
7
Journal Title
Nuclear Engineering and Technology
Volume
51
Number
5
Start Page
1307
End Page
1313
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/18474
DOI
10.1016/j.net.2019.02.016
ISSN
1738-5733
Abstract
Recent analysis results with realistic assumptions provide the variability of operator allowable time for the initiation of aggressive cooldown under small break loss of coolant accident or steam generator tube rupture with total failure of high pressure safety injection. We investigated how plant risk may vary depending on the variability of operators’ failure probability of timely initiation of aggressive cooldown. Using a probabilistic safety assessment model of a nuclear power plant, we showed that plant risks had a linear relation with the failure probability of aggressive cooldown and could be reduced by up to 10% as aggressive cooldown is more reliably performed. For individual accident management, we found that core damage potential could be gradually reduced by up to 40.49% and 63.84% after a small break loss of coolant accident or a steam generator tube rupture, respectively. Based on the importance of timely initiation of aggressive cooldown by main control room operators within the success criteria, implications for improvement of emergency operating procedures are discussed. We recommend conducting further detailed analyses of aggressive cooldown, commensurate with its importance in reducing risks in nuclear power plants. © 2019
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Kim, Man Cheol
공과대학 (에너지시스템 공학부)
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