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New method for estimating uranium and plutonium masses using differential die-away signals
- Seol, Sehwan;
- Kim, Jae Chang;
- Bernaski, Junehyung Lee;
- Kim, Yong Kyun;
- Hong, Ser Gi
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0초록
This study presents a novel method for estimating the masses of uranium-235 and total plutonium in spent nuclear fuel assemblies using only Differential Die-Away (DDA) analysis results and cooling time without relying on passive or delayed neutron measurements. A database of DDA signals was generated through MCNP6 simulations based on spent nuclear fuel compositions derived from ORIGAMI depletion calculations under a wide range of initial enrichments, burnups, and cooling times. The correlations were developed between DDA results (i.e., die-away time and total neutron counts) and the isotopic masses. For235U, a linear function of the signal ratio was used with the coefficients depending on cooling time. For Pu, a separate correlation was introduced using the die-away time difference between spent and fresh fuels, which required an estimation of initial enrichment. A Gaussian Process Regression (GPR) model was trained for this purpose, achieving high accuracy. Validation with 50 independent SNFs showed high prediction performance with maximum relative errors of 7.52 % and 2.41 % for235U and Pu, respectively. This method provides a non-destructive and efficient technique for characterizing spent nuclear fuel assemblies, offering potential applications in nuclear safeguards, spent fuel management, and nuclear material accountancy.
키워드
- 제목
- New method for estimating uranium and plutonium masses using differential die-away signals
- 저자
- Seol, Sehwan; Kim, Jae Chang; Bernaski, Junehyung Lee; Kim, Yong Kyun; Hong, Ser Gi
- 발행일
- 2026-05
- 유형
- Article
- 권
- 58
- 호
- 5
- 페이지
- 1 ~ 10