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Contents 1

Algorithm for computational age dating of nuclear material for nuclear forensic purposes / Jaechan Park ; Jungho Song ; Minsu Ju ; Jinyoung Chung ; Taehoon Jeon ; Changwoo Kang ; Seung Min Woo 1

[요약] 1

1. Introduction 2

2. Methodology and Result 2

2.1. Radioactive Equilibrium Relationships of Nuclear Materials and Radio-Chronometry 2

2.2. Mathematical Models for Radio-Chronometry 3

2.3. Decay Chain Radioactivity Calculation Method 5

2.4. Radio-Chronometry Algorithm and Influencing Factors 7

2.5. Comparison of Radio-Chronometry Algorithms 9

3. Conclusion 11

REFERENCES 12

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
Design optimization of an impact limiter considering material uncertainties Jongmin Lim, Woo-Seok Choi p. 133-149

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Sorption of Eu on MX-80 bentonite in Na–Ca–Cl brine solutions Jieci Yang, Joshua Racette, Fabiola Guido Garcia, Shinya Nagasaki, Tammy Yang p. 151-160

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Effect of steady-state oxidation on tensile failure of zircaloy cladding Taeho Kim, Kyoung Joon Choi, Seung Chang Yoo, Yunju Lee, Ji Hyun Kim p. 161-170

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Algorithm for computational age dating of nuclear material for nuclear forensic purposes Jaechan Park, Jungho Song, Minsu Ju, Jinyoung Chung, Taehoon Jeon, Changwoo Kang, Seung Min Woo p. 171-183

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Evaluation of water suction for compacted bentonite buffer under elevated temperature conditions Seok Yoon, Deuk-Hwan Lee, Won-Jin Cho, Changsoo Lee, Dong-Keun Cho p. 185-192

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Chlorination of TRU/RE/SrOx in oxide spent nuclear fuel using ammonium chloride as a chlorinating agent Dalsung Yoon, Seungwoo Paek, Sang-Kwon Lee, Ju Ho Lee, Chang Hwa Lee p. 193-207

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Review, assessment, and learning lesson on how to design a spectroelectrochemical experiment for the molten salt system Dimitris Killinger, Supathorn Phongikaroon p. 209-229

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Review of instant release fractions of long-lived radionuclides in CANDU and PWR spent nuclear fuels under the geological disposal conditions Heui Joo Choi, Yang-Hyun Koo, Dong-Keun Cho p. 231-241

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Suggestion of efficient high dose spent filter handling and compaction equipment Kyungho Lee, Sewon Chung, Seonghee Park, HuiGyeong Kim p. 243-253

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(Letter) iKSNF, the control tower for the R&D program of SNF storage and disposal Kyungsu Kim p. 255-258

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참고문헌 (24건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 B. Briyatmoko. Identification of High Confidence Nuclear Forensics Signatures for Mining, Milling and Conversion Process, International Atomic Energy Agency Report, IAEA-TECDOC-1820 (2017). 미소장
2 International Atomic Energy Agency. Application of Nuclear Forensics in Combating Illicit Trafficking of Nuclear and Other Radioactive Material, IAEA Report, IAEA-TECDOC-1730 (2014). 미소장
3 H. Bateman, “Solution of a System of Differential Equations Occurring in the Theory of Radioactive Transformations”, in: Proceeding of the Cambridge Philosophical Society: Mathematical and Physical Science, 15, 423-427, Cambridge Philosophical Society, Cambridge (1910). 미소장
4 J. Cetnar, P. Stanisz, and M. Oettingen, “Linear Chain Method for Numerical Modelling of Burnup Systems”, Energies, 14(6), 1520 (2021). 미소장
5 A.F. Pacheco and L. Moral, “Algebraic Approach to the Radioactive Decay Equations”, Am. J. Phys., 71, 684(2003). 미소장
6 E. Levy, “Decay Chain Differential Equations: Solutions Through Matrix Analysis”, Comput. Phys. Commun., 234, 188-194 (2019). 미소장
7 A. E. Isotalo and P.A. Aarnio, “Comparison of Depletion Algorithms for Large Systems of Nuclides”, Ann. Nucl. Energy, 38(2-3), 261-268 (2011). 미소장
8 A.G. Croff, “ORIGEN2: A Versatile Computer Code for Calculating the Nuclide Compositions and Characteristics of Nuclear Materials”, Nucl. Technol., 62(3), 335-352 (1983). 미소장
9 M. Pusa and J. Leppanen, “Computing the Matrix Exponential in Burnup Calculations”, Nucl. Sci. Eng., 164(2), 140-150 (2010). 미소장
10 M.J. Kristo, A.M. Gaffney, N. Marks, K. Knight, W.S. Cassata, and Ian D. Hutcheon, “Nuclear Forensic Science:Analysis of Nuclear Material Out of Regulatory Control”, Annu. Rev. Earth Planet. Sci., 44, 555-579(2016). 미소장
11 R.W. Williams, A.M. Gaffney, and M.J. Kristo. Radiochronometry Guidance, Lawrence Livermore National Laboratory Technical Report, LLNL-TR-701379(2016). 미소장
12 International Technical Working Group, ITWG Guideline on Age Dating (Production Date Determination), ITWG-INFL-APDP-v1 (2016). 미소장
13 A.L. Fauré and T. Dalger, “Age Dating of Individual Micrometer-Sized Uranium Particles by Secondary Ion Mass Spectrometry: An Additional Fingerprint for Nuclear Safeguards Purposes”, Anal. Chem., 89(12), 6663-6669 (2017). 미소장
14 T.M. Kayzar, and R.W. Williams, “Developing 226Ra and 227Ac Age-Dating Techniques for Nuclear Forensics to Gain Insight From Concordant and Nonconcordant Radiochronometers”, J. Radioanal. Nucl. Chem., 307(3), 2061-2068 (2016). 미소장
15 Z. Varga, C. Venchiarutti, A. Nicholl, J. Krajkó, R. Jakopič, K. Mayer, S. Richter, and Y. Aregbe, “IRMM-1000a and IRMM-1000b Uranium Reference Materials Certified for the Production Date. Part I: Methodology, Preparation and Target Characteristics”, J. Radioanal. Nucl. Chem., 307(2), 1077-1085 (2016). 미소장
16 Z. Varga, A. Nicholl, J. Zsigrai, M. Wallenius, and K. Mayer, “Methodology for the Preparation and Validation of Plutonium Age Dating Materials”, Anal. Chem., 90(6), 4019-4024 (2018). 미소장
17 A.M. Gaffney, J.B.N. Wimpenny, T. Parsons-Davis, R.W. Williams, R.A. Torrese, and B.W. Chung, “A Case Study in Plutonium Radiochronometry Using Multiple Isotope Systems”, J. Radioanal. Nucl. Chem., 318(1), 287-295 (2018). 미소장
18 MathWorks. 2021. “Explanation of Funm (Evaluate General Matrix Function) Function.” MathWorks. Accessed Nov. 8 2021. Available from: https://kr. mathworks.com/help/matlab/ref/funm. 미소장
19 MathWorks. 2021. “Explanation of Vpasolve (Solve Equations Numerically) Function.” MathWorks. Accessed Nov. 8 2021. Available from: https://kr.mathworks. com/help/symbolic/sym.vpasolve. 미소장
20 A. Morgenstern, C. Apostolidis, and K. Mayer, “Age Determination of Highly Enriched Uranium: Separation and Analysis of 231Pa”, Anal. Chem., 74(21), 5513-5516 (2002). 미소장
21 Korea Laboratory Accreditation Scheme, Guidelines for Estimating and Expressing Uncertainty in Measurement Results, KOLAS-G-002 (2020). 미소장
22 Oak Ridge National Laboratory. Bateman Equation Adaptation for Solving and Integrating Peak Activity Into EPA ELCR and Dose Models, ORNL Report, ORNL/TM-2020/1780 (2020). 미소장
23 World Information Service on Energy Uranium Project. December 14 2020. “Universal Decay Calculator.”WISE Uranium Project. Accessed Nov. 15 2021. Available from: https://www.wise-uranium.org/rcc.html. 미소장
24 A.M. Gaffney, A. Hubert, W.S. Kinman, M. Magara, A. Okubo, F. Pointurier, K.C. Schorzman, R.E. Steiner, and R.W. Williams, “Round-Robin 230Th–234U Age Dating of Bulk Uranium for Nuclear Forensics”, J. Radioanal. Nucl. Chem., 307, 2055-2060 (2016). 미소장