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Fuzzy Uncertainty Evaluation for Fault Tree Analysis

Authors
Kim, Ki BeomShim, Hyung JinJae, Moo Sung
Issue Date
May-2015
Publisher
한국원자력학회
Keywords
COMPUTER CALCULATIONS; DAMAGE; ERRORS; FAULT TREE ANALYSIS; FUZZY LOGIC; LOSS OF COOLANT; PROBABILITY
Citation
한국원자력학회 2015춘계학술발표회논문집, pp.1 - 3
Indexed
OTHER
Journal Title
한국원자력학회 2015춘계학술발표회논문집
Start Page
1
End Page
3
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/157158
Abstract
This traditional probabilistic approach can calculate relatively accurate results. However it requires a long time because of repetitive computation due to the MC method. In addition, when informative data for statistical analysis are not sufficient or some events are mainly caused by human error, the probabilistic approach may not be possible because uncertainties of these events are difficult to be expressed by probabilistic distributions. In order to reduce the computation time and quantify uncertainties of top events when basic events whose uncertainties are difficult to be expressed by probabilistic distributions exist, the fuzzy uncertainty propagation based on fuzzy set theory can be applied. In this paper, we develop a fuzzy uncertainty propagation code and apply the fault tree of the core damage accident after the large loss of coolant accident (LLOCA). The fuzzy uncertainty propagation code is implemented and tested for the fault tree of the radiation release accident. We apply this code to the fault tree of the core damage accident after the LLOCA in three cases and compare the results with those computed by the probabilistic uncertainty propagation using the MC method. The results obtained by the fuzzy uncertainty propagation can be calculated in relatively short time, covering the results obtained by the probabilistic uncertainty propagation.
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COLLEGE OF ENGINEERING (DEPARTMENT OF NUCLEAR ENGINEERING)
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