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Using RESRAD-BUILD for Potential Radiation Dose Estimation the Korea Research Reactor-1 When It Opens to the Public as a Memorial Hall 원문보기

International journal of contents, v.16 no.2, 2020년, pp.102 - 108  

Lee, Sangbok (Department of Radioactivity Test & Analysis center, Sunkwang T&S, Department of Radiological Science, Graduate school of Gachon University) ,  Yoon, Yongsu (Department of Health Sciences Kyushu University) ,  Kim, Sungchul (Department of Radiological Science, Graduate school of Gachon University)

Abstract AI-Helper 아이콘AI-Helper

The purpose of this study was to estimate and analyze the potential radiation dose that the future visitors and the cleaning staff will be exposed to when the KRR-1 reactor is converted into a memorial hall. The radiation doses were estimated using the RESRAD-BUILD software, where case, building, re...

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표/그림 (10)

AI 본문요약
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제안 방법

  • Despite the limitations of this study, the memorial project of the research reactor is a project designated as a cultural asset. In addition, this study is valuable in that it is estimated indirectly based on nuclide data obtained from waste generated during the KRR-1 decomposition process in the absence of basic data to evaluate them.
  • More specifically, this study aims to assess the safety of future visitors and staff (especially those who will spend longer periods of time near the nuclear reactors, i.e., the cleaning staff) at the memorial hall when it opens [5].
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참고문헌 (15)

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  2. K. J. Jung, "Decontamination and Decommissioning Project of the KRR 1&2 Research Reactors," Korea Atomic Energy Research Institute, Rep. RR-2182, 2002. Accessed: Jun. 10, 2019. [Online] Available: http://www.ndsl.kr/ndsl/commons/util/ndslOriginalView.do 

  3. H. K. Kim and Y. J. Kim, "Seeking Principles for a Korean Nuclear Decommissioning System from a Comparative Perspective," Journal of International Area Studies, vol. 19, no. 1, pp. 3-32, 2015. Accessed: Jun. 10, 2019. [Online] Available: file:///C:/Users/GC/AppData/Local/Microsoft/Windows/INetCache/IE/O11UR4XT/KCI_FI001985262.pdf 

  4. H. J. Lee, S. W. Ji, W. J. Kim, T. G. Do, D. Y. Kim, and K. P. Kim, "Study of Decommissioning Organization and Target Doses for Management of Radiation Exposure to Workers at Nuclear Facilities," J. Radiat. Ind., vol. 12, no. 1, pp. 89-96, 2018. Accessed: Jun. 10, 2019. [Online] Available: https://www.ksri.kr/0304/view/page/13/id/3463 

  5. ICRP Publication 103, "The 2007 Recommendations of the international commission on radiological protection," 2007. Accessed: Jun. 10, 2019. [Online] Available: http://www.icrp.org/publication.asp?idICRP%20Publication%20103 

  6. Argonne National Laboratory, Development of Probabilistic RESRAD 6.0 and RESRAD-BUILD 3.0 Computer Codes, EAD/TM-98, 2000. Accessed: Jun. 10, 2019. [Online] Available: https://resrad.evs.anl.gov/docs/NUREG_6697.pdf 

  7. Argonne National Laboratory, User's Manual for RESRAD- BUILD Version 3.0, EAD/03-1, 2003. Accessed: Jun. 10, 2019. [Online] Available: https://resrad.evs.anl.gov/docs/ANL-EAD-03-1.pdf 

  8. Rancho Seco, Compliance With the Radiological. Chapter 6, License Termination, 2008. Accessed: Jun. 10, 2019. [Online] Available: https://www.nrc.gov/docs/ML0819/ML081990517.pdf 

  9. S. Pepin, "Use of NORM-containing products in construction Using RESRAD-BUILD to assess the external dose from the natural radioactivity of building materials," Construction and Building Materials, vol. 168, pp. 1003-1007, Apr. 2018, doi: https://doi.org/10.1016/j.conbuildmat.2018.02.015. 

  10. S. B. Hong, K. W. Lee, J. H. Park, and U. S. Chung, "Application of MARSSIM for Final Status Survey of the Decommissioning Project," Journal of the Korean Radioactive Waste Society, vol. 9, no. 2, pp. 107-111, 2011, doi: http://dx.doi.org/10.7733/jkrws.2011.9.2.107. 

  11. S. B. Hong, "A Study on the Optimization Method for Decommissioning Site Remediation," Ph.D. Dept. of Nuclear Engineering, Kyung Hee University, Korea, 2016. 

  12. J. Samseth, A. Banford, B. Metcalf. M. Cantone, P. Lietava, H. Peimani, and A. Szilagyi, Closing and Decommissioning Nuclear Power Reactor, UNEP Year Book, pp. 35-49, 2012. Accessed: Jun. 10, 2019. [Online] Available: https://pdfs.semanticscholar.org/e595/96bd6e90a9382dfbab9b22b0d8b512f18879.pdf 

  13. S. J. Park, J. Byon, D. H. Ban, S. Lee, W. Sohn, and S. Ahn, "Derivation of preliminary derived concentration guideline level (DCGL) by reuse scenario for Kori Unit 1 using RESRAD-BUILD," Nuclear Engineering and Technology, vol. 52, no. 6, pp. 1231-1242, Jun. 2019, doi: https://doi.org/10.1016/j.net.2019.11.032. 

  14. S. Y. Cho, Y. S. Kim, D. W. Park, and C. J. Park, "A study on DCGL determination and the classification of contaminated areas for preliminary decommission planning of KEPCO-NF nuclear fuel fabrication facility," Nuclear Engineering and Technology, vol. 51, no. 8, pp. 1951-1956, Dec. 2019, doi: https://doi.org/10.1016/j.net.2019.06.012. 

  15. S. Kamboj, Y. Charley, and R. Johnson, "Development of DCGLs by using both probabilistic and deterministic analysis in RESRAD and RESRAD-OFFSITE codes," Journal of the Health Physics Society, vol. 104, pp. 68-75, May. 2013, doi: 10.1097/HP.0b013e318286cb20. 

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