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Kubo, Kotaro; Tanaka, Yoichi
Proceedings of Asian Symposium on Risk Assessment and Management 2021 (ASRAM 2021) (Internet), 13 Pages, 2021/10
Probabilistic risk assessment (PRA) is extensively used, e.g., in periodical safety review and the reactor oversight process, in nuclear regulation systems to improve the safety of nuclear power plants; however, one limitation of classical PRA is the handling of temporal information such as system failure and core damage timings. To resolve this limitation, the dynamic PRA method has been developed and applied for multiple safety issues; however, its improvement is accompanied by considerable computational costs. In this study, we applied the polynomial chaos expansion (PCE) technique to dynamic PRA with the expectation of reduction in computational cost. In particular, to estimate core damage timing, a PCE-based surrogate model was developed. Then, the surrogate model was applied to dynamic PRA to calculate the conditional core damage probability and core damage timing. Consequently, applying the PCE might efficiently perform these analyses without considerable reduction in accuracy.
Madarame, Haruki*; Okamoto, Koji*; Tanaka, Gentaro*; Morimoto, Yuichiro*; Sato, Akira*; Kondo, Masaya
JAERI-Tech 2003-017, 156 Pages, 2003/03
no abstracts in English
Bak, P. E.; Yoshino, Ryuji; Asakura, Nobuyuki; Nakano, Tomohide
Physical Review Letters, 83(7), p.1339 - 1342, 1999/00
Times Cited Count:25 Percentile:75.46(Physics, Multidisciplinary)no abstracts in English
Watanabe, Tadashi;
JAERI-Research 96-046, 50 Pages, 1996/09
no abstracts in English
Watanabe, Tadashi; Kukita, Yutaka
Phys. Fluids A, 5(11), p.2682 - 2688, 1993/11
Times Cited Count:77 Percentile:92.49(Mechanics)no abstracts in English
Suzudo, Tomoaki; Hayashi, Koji
Proc. of a Symp. on Nuclear Reactor Surveillance and Diagnostics,Vol. 1, 12 Pages, 1991/00
no abstracts in English