Open Access
Issue
EPJ Web Conf.
Volume 153, 2017
ICRS-13 & RPSD-2016, 13th International Conference on Radiation Shielding & 19th Topical Meeting of the Radiation Protection and Shielding Division of the American Nuclear Society - 2016
Article Number 05009
Number of page(s) 4
Section 5. Fission Facilities, Fuel Cycle & Waste Management Facilities, Decommissioning
DOI https://doi.org/10.1051/epjconf/201715305009
Published online 25 September 2017
  1. H. Hilsdorf, J. Kropp, H. Koch, The effects of nuclear radiation on the mechanical properties of concrete, Special Publication of the American Concrete Institute 55, 223-254 (1978) [Google Scholar]
  2. O. Kontani, Y. Ichikawa. A. Ishizawa, M. Takizawa, O. Sato, Irradiation effects on concrete structure, International Symposium on the Ageing Management and Maintenance of Nuclear Power Plants, 173-182 (2010) [Google Scholar]
  3. H. Graves, Y. Le Pape, D. Naus, J. Rashid, V. Saouma, A. Sheikh, and J. Wall,. Expanded Material Degradation Assessment (EMDA), Vol. 4: Aging of Concrete, NUREG/CR-7153, ORNL/TM-2011/545. U.S. NRC, (2014) [Google Scholar]
  4. U.S. NRC, Agency-wide Documents Access and ManagementSystem(ADAMS), http://www.nrc.gov/reading-iniladams.html (2015) [Google Scholar]
  5. I. Remec, Status Report on Defming a Unified Parameter for Characterization of Radiation Intended for Evaluation of Radiation-induced Degradation of Concrete, Technical Report, ORNL, (2014) [Google Scholar]
  6. T. Esselman, et al., Expected Condition of Concrete at Age 80 Years of Reactor Operation, Technical Report, A13276-R-001, Lucius Pitkin, Inc., (2013) [Google Scholar]
  7. K.G. Field, I. Remec, Y. Le Pape, Radiation effects in concrete for nuclear power plants — Part I: Quantification of radiation exposure and radiation effects, Nuclear Engineering and Design, Vol. 282, pp. 126-143, ISSN 0029-5493 (2015) [Google Scholar]
  8. I. Remec, et al., Characterization of Radiation Fields in Biological Shields of NPPs for Assessing Concrete Degradation, EPJ Web of Conferences 106, (2016) 02002, http://dx.doi.org/10.1051/epjconf/201610602002 [Google Scholar]
  9. L.R. Greenwood, SPECOMP Calculations of Radiation Damage in Compounds, ASTM-STP 1001, pp. 598-602, (1989) [Google Scholar]
  10. ASTM E Standard Practice for Characterizing Neutron Fluence Spectra in Terms of an Equivalent Monoenergetic Neutron Fluence for Radiation-Hardness Testing of Electronics, Annual Book of ASTM Standards, Vol. 12.02 (2015) [Google Scholar]
  11. P. Beynel, et al., Compilation of Radiation Damage Test Data, Part III: Materials used around high-energy accelerators, CERN 82-10, (1982) [Google Scholar]
  12. T.M. Rosseel, et al., Recent Advances in Understanding Radiation Damage In Reactor Cavity Concrete, Transactions, SMiRT-23, Manchester, United Kingdom - August 10-14, (2015) [Google Scholar]

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