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학술논문

Time-Dependent Safety Analysis of Spent Nuclear Fuel: An MCNPX- MATLAB Framework Linking Isotopic Predictions to Phase-Dominant Contributions in Decay Heat and Radioactivity

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영문명
발행기관
한국방사성폐기물학회
저자명
Essam Banoqitah Amir Alramady Marwan Alkhathami Faisal Alzahrani Sherif Nafee Nader Mohamed
간행물 정보
『Journal of Nuclear Fuel Cycle and Waste Technology (JNFCWT)』Vol.23 No.3, 303~314쪽, 전체 12쪽
주제분류
공학 > 공학일반
파일형태
PDF
발행일자
2025.09.30
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국문 초록

This study integrates MCNPX and MATLAB to analyze decay heat and radioactivity evolution in spent nuclear fuel (SNF) over 10¹⁰ seconds. MCNPX models burnup-dependent isotopic inventories, while MATLAB solves Bateman equations for decay analysis. Six phases, defined by dominant isotopes, dictate safety protocols. For decay heat, the short-term phase ( 140La, 239Np, 144Pr) requires active cooling; intermediate (144Pr, 106Rh, 95Nb, 95Zr) permits passive dry cask storage; and long-term (137Cs, 90Sr, 241Am, 241Pu) necessitates geological repositories. Radioactivity evolves through three phases: immediate with high gamma emitters (95Nb, 144Ce, 144Pr, 95Zr) demanding shielding; intermediate dominated by 137Cs, 241Pu, 90Sr, risking cask integrity; and long-term radiotoxicity from 137Cs, 90Sr, 241Am, 241Pu, requiring geological confinement. These temporal transitions highlight phase-specific risks: short-term strategies prioritize active cooling and shielding, while long-term solutions focus on multi-barrier isolation. The study provides a roadmap for optimizing cooling systems, shielding designs, and repository architectures to mitigate risks across the SNF lifecycle. By mapping isotopic contributions over time, the framework supports balanced technical-regulatory decisions, enhancing safety from reactor discharge to permanent disposal.

영문 초록

목차

1. Introduction
2. Methodology
3. Results and Discussion
4. Conclusion
Conflict of Interest
REFERENCES

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APA

Essam Banoqitah,Amir Alramady,Marwan Alkhathami,Faisal Alzahrani,Sherif Nafee,Nader Mohamed. (2025).Time-Dependent Safety Analysis of Spent Nuclear Fuel: An MCNPX- MATLAB Framework Linking Isotopic Predictions to Phase-Dominant Contributions in Decay Heat and Radioactivity. Journal of Nuclear Fuel Cycle and Waste Technology (JNFCWT), 23 (3), 303-314

MLA

Essam Banoqitah,Amir Alramady,Marwan Alkhathami,Faisal Alzahrani,Sherif Nafee,Nader Mohamed. "Time-Dependent Safety Analysis of Spent Nuclear Fuel: An MCNPX- MATLAB Framework Linking Isotopic Predictions to Phase-Dominant Contributions in Decay Heat and Radioactivity." Journal of Nuclear Fuel Cycle and Waste Technology (JNFCWT), 23.3(2025): 303-314

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