Open Access
Issue |
EPJ Web Conf.
Volume 247, 2021
PHYSOR2020 – International Conference on Physics of Reactors: Transition to a Scalable Nuclear Future
|
|
---|---|---|
Article Number | 21002 | |
Number of page(s) | 8 | |
Section | CORTEX | |
DOI | https://doi.org/10.1051/epjconf/202124721002 | |
Published online | 22 February 2021 |
- Pázsit, I., Demazière, C., 2010. “Noise Techniques in Nuclear Systems”. Handbook of Nuclear Engineering, Ed. D. G. Cacuci,3, 2, Springer Verlag. [Google Scholar]
- Schneider, D. et al., 2016. “APOLLO3: CEA/DEN Deterministic multi-purpose code for reactor physics analysis”. Unifying Theory and Experiments in the 21st Century (PHYSOR 2016), Sun Valley, Idaho, United States, May, 1-5. [Google Scholar]
- Brun, E. et al., 2015. “TRIPOLI-4®, CEA, EDF and AREVA reference Monte Carlo code”. Annals of Nuclear Energy 82, 151-160. [Google Scholar]
- Demazière, C. et al., 2018. “Overview of the CORTEX project”. Reactor Physics Paving TheWay Towards Mode Efficient Systems (PHYSOR 2018), Cancun, Mexico, April 22-26. [Google Scholar]
- Rouchon, A. et al., 2017. “The new 3-D multigroup diffusion neutron noise solver of APOLLO3® and a theoretical discussion of fission-modes noise”. International Conference on Mathematics & Computational Methods Applied to Nuclear Science & Engineering (M&C 2017), Jeju, Korea, April 16-20. [Google Scholar]
- Rouchon, A. et al., 2017. “A new Monte Carlo method for neutron noise calculations in the frequency domain”. Annals of Nuclear Energy 102, 465-475. [Google Scholar]
- Rouchon, A. et al., 2019. “The new neutron noise solver of the Monte Carlo code TRIPOLI-4®”. International Conference on Mathematics & Computational Methods Applied to Nuclear Science & Engineering (M&C 2019), Portland, Oregon, United States, August, 25-29. [Google Scholar]
- Yamamoto, T., 2013. “Monte Carlo method with complex-valued weights for frequency domain analyses of neutron noise”. Annals of Nuclear Energy 58, 72-79. [Google Scholar]
- Yamamoto, T., 2018. “Implementation of a frequency-domain neutron noise analysis method in a production-level continuous energy Monte Carlo code: Verification and application in a BWR”. Annals of Nuclear Energy 115, 494–501. [Google Scholar]
- Demazière, C., 2011. “CORE SIM: A multi-purpose neutronic tool for research and education”. Annals of Nuclear Energy 38, 2698-2718. [Google Scholar]
- Gammicchia, A. et al., 2019. “Neutron kinetics equations in APOLLO3® code for application to noise problems”. International Conference on Mathematics & Computational Methods Applied to Nuclear Science & Engineering (M&C 2019), Portland, USA, August 25-29. [Google Scholar]
- Rais, A. et al., 2019. “Towards the validation of neutron noise simulators: qualification of data acquisition systems”. International Conference on Mathematics & Computational Methods Applied to Nuclear Science & Engineering (M&C 2019), Portland, USA, August 25-29. [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.