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자료유형
학술저널
저자정보
저널정보
한국원자력학회 Nuclear Engineering and Technology Nuclear Engineering and Technology 제50권 제5호
발행연도
2018.1
수록면
673 - 682 (10page)

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One of the most widely used methods to estimate core damage during a nuclear power plant accident iscontainment radiation measurement. The evolution of severe accidents is extremely complex, leading touncertainty in the containment dose rate (CDR). Therefore, it is difficult to accurately determine coredamage. This study proposes to conduct uncertainty analysis of CDR for core damage assessment. First,based on source term estimation, the Monte Carlo (MC) and point-kernel integration methods were usedto estimate the probability density function of the CDR under different extents of core damage in accidentscenarios with late containment failure. Second, the results were verified by comparing the resultsof both methods. The point-kernel integration method results were more dispersed than the MC results,and the MC method was used for both quantitative and qualitative analyses. Quantitative analysisindicated a linear relationship, rather than the expected proportional relationship, between the CDR andcore damage fraction. The CDR distribution obeyed a logarithmic normal distribution in accidents with asmall break in containment, but not in accidents with a large break in containment. A possible applicationof our analysis is a real-time core damage estimation program based on the CDR

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