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Comparative Study of Dose Evaluation of Liquid Effluent in Nuclear Power Plants for Radiological Impact on the Environment Review

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영문명
발행기관
한국방사성폐기물학회
저자명
Seokju Hwang Si-Young Kim Deuk-Man Kim Young Hwan Hwang Jungkwon Son
간행물 정보
『Journal of Nuclear Fuel Cycle and Waste Technology (JNFCWT)』Vol.22 No.1, 45~54쪽, 전체 10쪽
주제분류
공학 > 공학일반
파일형태
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발행일자
2024.04.30
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Currently, off-site dose calculations for nuclear power plants are conducted using a computer program (K-DOSE 60). The program is developed based on the regulatory guidelines of the Korea Institute of Nuclear Safety (KINS), which is a domestic nuclear regulatory agency. In this study, a domestic application of the International Atomic Energy Agency (IAEA) TRS (Technical Reports Series)-472 methodology for 3H and 14C in liquid effluents was studied. The dose-evaluation methods adopted and the program configuration for dose evaluation are described based on 3H and 14C in the liquid-effluent-evaluation module of the computer program. The accuracy of the program is verified by comparing the program-calculated results with hand calculation values. Furthermore, a comparative evaluation with LADTAP II, which is a liquid-effluent-evaluation methodology developed by the U.S. NRC (Nuclear Regulatory Commission), is performed. The result confirms that the program-calculated results for the IAEA TRS-472 methodology are consistent with the hand calculation values. Meanwhile, the result of comparative evaluation with LADTAP II indicates different results depending on the methodology used.

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APA

Seokju Hwang,Si-Young Kim,Deuk-Man Kim,Young Hwan Hwang,Jungkwon Son. (2024).Comparative Study of Dose Evaluation of Liquid Effluent in Nuclear Power Plants for Radiological Impact on the Environment Review. Journal of Nuclear Fuel Cycle and Waste Technology (JNFCWT), 21 (1), 45-54

MLA

Seokju Hwang,Si-Young Kim,Deuk-Man Kim,Young Hwan Hwang,Jungkwon Son. "Comparative Study of Dose Evaluation of Liquid Effluent in Nuclear Power Plants for Radiological Impact on the Environment Review." Journal of Nuclear Fuel Cycle and Waste Technology (JNFCWT), 21.1(2024): 45-54

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