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ARISING TECHNICAL ISSUES IN THE DEVELOPMENT OF A TRANSPORTATION AND STORAGE SYSTEM OF SPENT NUCLEAR FUEL IN KOREA

  • 투고 : 2011.10.20
  • 발행 : 2011.10.31

초록

In Korea, although the concept of dry storage system for PWR spent fuels first emerged in the early 1990s, wet storage inside nuclear reactor buildings remains the dominant storage paradigm. Furthermore, as the amount of discharged fuel from nuclear power plants increases, nuclear power plants are confronted with the problem of meeting storage capacity demand. Various measures have been taken to resolve this problem. Dry storage systems along with transportation of spent fuel either on-site or off-site are regarded as the most feasible measure. In order to develop dry storage and transportation system safety analyses, development of design techniques, full scale performance tests, and research on key material degradation should be conducted. This paper deals with two topics, structural analysis methodology to assess cumulative damage to transportation packages and the effects of an aircraft engine crash on a dual purpose cask. These newly emerging issues are selected from among the many technical issues related to the development of transportation and storage systems of spent fuels. In the design process, appropriate analytical methods, procedures, and tools are used in conjunction with a suitably selected test procedure and assumptions such as jet engine simulation for postulated design events and a beyond design basis accident.

키워드

참고문헌

  1. Tsu-te Wu, et al, "Dynamic Analysis of Hanford Unirradiated Fuel Package Subjected to Sequential Lateral Loads in Hypothetical Accident Conditions", PVP 2008-61564.
  2. J. M. Jordan, "Finite Element Analysis of Bulk Tritium Shipping Package", INMM.
  3. DOE standard DOE-STD-3014-2006, "Accident analysis for aircraft crash into hazardous facilities," US DOE: 2006.
  4. US NRC, 10 CFR 50.150 Aircraft impact assessment, 2009
  5. NEI, "Deterring terrorism: Aircraft crash impact analyses demonstrate nuclear power plant's structural strength," NEI, 2002
  6. K Shirai et al. "Safety analysis of dual purpose metal cask subject to impulsive load due to aircraft engine crash," Journal of Power and Energy Systems, Vol. 3, pp. 72-82
  7. J Stepan et al. "Consequences of the large commercial aircraft crash into the interim spent fuel storage facility," Proceedings of SMiRT 18, Beijing, China, 2005
  8. NUREG/CR-6672, Reexamination of spent fuel shipment risk estimates, Sandia National Laboratory, 2004

피인용 문헌

  1. A coupled thermal-drop impact analysis-based safety assessment of radioactive material cask vol.9, pp.2, 2018, https://doi.org/10.1108/IJSI-05-2017-0028