Open Access
Issue
EPJ Web Conf.
Volume 247, 2021
PHYSOR2020 – International Conference on Physics of Reactors: Transition to a Scalable Nuclear Future
Article Number 20002
Number of page(s) 8
Section Global Nuclear Innovation (Special session)
DOI https://doi.org/10.1051/epjconf/202124720002
Published online 22 February 2021
  1. I. Duhamel, E. Létang, “The PRINCESS project: an IRSN project for experimental data acquisition in the frame of criticality and reactor physics”, Transactions of the American Nuclear Society, Vol. 115, Las Vegas, USA, November 6-10 (2016). [Google Scholar]
  2. V. Jaiswal, L. Leal, “Investigation of frequency spectrum of light water to generate thermal scattering law”, Proceedings of PHYSOR Conference, Cancun, Mexico, April 22-26 (2018) [Google Scholar]
  3. L. Leal, V. Jaiswal, A. Kolesnikov, “High-resolution time-of-flight measurements for light water at the Spallation Neutron Source (SNS), Oak Ridge National Laboratory”, Proceedings of Nuclear Data (ND) Conference, (2019) [Google Scholar]
  4. I. Duhamel, N. Leclaire, L. Leal, “Measurement, evaluation and validation of molybdenum cross sections”, Proceedings of PHYSOR Conference, Cambridge, United Kingdom, March 29-April 2 (2020) [Google Scholar]
  5. N. Leclaire, I. Duhamel, M. Monestier, “Use of advanced optimization algorithms for the design of critical experiments”, Proceedings of Nuclear Criticality Safety Division (NCSD) Conference, Cambridge, United Kingdom, March 29-April 2 (2020) [Google Scholar]
  6. C. Percher et al., “Thermal Epithermal eXperiments (TEX): test bed assemblies for efficient generation of integral benchmarks”, Proceedings of the 11th International conference on Nuclear Criticality Safety (ICNC), Paris, France, September 15-20 (2019) [Google Scholar]
  7. “International Criticality Safety Benchmark Experiment Handbook,” NEA-1486/16, Nuclear Energy Agency, OECD Nuclear Energy Agency (2019) [Google Scholar]
  8. M. Brovchenko, I. Duhamel, R. Salmon, Y. Richet, “Preliminary Design of the TEX-MOX Criticality Experimental Program using Optimization Algorithms Implemented in the IRSN PROMETHEE Tool”, Transactions of the American Nuclear Society, Vol. 115, Las Vegas, USA, November 6-10 (2016) [Google Scholar]
  9. PROMETHEE project: http://promethee.irsn.org/ [Google Scholar]
  10. K. Izawa et al., “Neutronic design of basic cores of the new STACY”, Proceedings of the 11th International conference on Nuclear Criticality Safety (ICNC), Paris, France, September 15-20 (2019) [Google Scholar]
  11. S. Gunji et al., “Design methodology for fuel debris experiment in the new STACY facility”, Proceedings of the 11th International conference on Nuclear Criticality Safety (ICNC), Paris, France, September 15-20 (2019) [Google Scholar]
  12. Cochet, B. et al., “Capabilities Overview of the MORET 5 Monte Carlo Code”, Annals of Nuclear Energy, 82 pp. 74–84 (2015). [Google Scholar]
  13. A. Nelson et al., “Fundamental physics subcritical neutron multiplicity benchmark experiments using water moderated highly enriched uranium fuel”, Proceedings of the 11th International conference on Nuclear Criticality Safety (ICNC), Paris, France, September 15-20 (2019) [Google Scholar]
  14. Bahran, J. Hutchinson, “Subcritical Copper-Reflected Alpha-Phase Plutonium (SCRaP) Integral Experiment Design”, Transactions of the American Nuclear Society, Vol. 114, 527-529 (2016). [Google Scholar]
  15. A. McSpaden et al., “MUSIC: a critical and subcritical experiment measuring highly enriched uranium shells”, Proceedings of the 11th International conference on Nuclear Criticality Safety (ICNC), Paris, France, September 15-20 (2019) [Google Scholar]
  16. M. Duluc et al., “Review of IRSN work regarding nuclear criticality accident”, Proceedings of the 11th International conference on Nuclear Criticality Safety (ICNC), Paris, France, September 15-20 (2019) [Google Scholar]
  17. F. Trompier et al., “2014 CALIBAN and PROSPERO experiments for the criticality accident dosimetry intercomparison”, Int. Conf. on Nuclear Criticality (ICNC 2015), Charlotte, USA, September 13-17(2015) [Google Scholar]
  18. K. Govers et al., “REGAL program –Technical scope of the REGAL BASE program”, External Report SCK.CEN-ER-110, July 2014 [Google Scholar]
  19. W. Haeck, A. Jinaphanh and B. Cochet, “New features and capabilities in the VESTA 2.2 Monte Carlo depletion software”, Proceedings of PHYSOR Conference, Sun Valley, USA, May 1-5 (2016) [Google Scholar]
  20. N. Thompson et al., “Neutron Clustering and the RPI Measurements”, NCSP Technical Program Review, Oak Ridge, USA, March 27-28 (2018) [Google Scholar]
  21. GENIORS Horizon 2020 Project -Grant Agreement -number: 755171 — GENIORS — NFRP-2016-2017/NFRP-2016-2017-1 [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.