SIMMER modelling of accident initiation phase in sodium fast reactors

Author:

Chen Xue-Nong,Rineiski Andrei

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference9 articles.

1. Chen, X.-N., Rineiski, A., Perez-Martin, S., Bubelis, E., Flad, M., 2022. “Simulations of ULOF initiation phase in ESFR-SMART with SIMMER-III”. International Conference on Fast Reactors and Related Fuel Cycles: Sustainable Clean Energy for the Future (FR22), 19-22 April 2022, IAEA, Vienna, Austria. Paper IAEA-CN-291-295.

2. Numerical studies of power oscillations induced by sodium boiling in ESFR after ULOF transient;Chen;Ann. Nucl. Energy,2023

3. Kondo, S., Tobita, Y., Morita, K., Shirakawa, N., 1992. “SIMMER-III: An advanced computer program for LMFBR severe accident analysis”, Proceedings of the International Conference on Design and Safety of Advanced Nuclear Power Plant (ANP’92), Vol. IV, Tokyo, Japan, 1992, pp.40.5-1 to 40.5-11. Also JAEA, “SIMMER-III: A Computer Program for LMFR Core Disruptive Accident Analysis”, JNC TN9400 2003-071 (2003).

4. Mikityuk, K., et al., 2017. “ESFR-SMART: new Horizon-2020 project on SFR safety”, International Conference on Fast Reactors and Related Fuel Cycles: Next Generation Nuclear Systems for Sustainable Development (FR17), 26-29 June 2017, Yekaterinburg, Russian Federation. Paper IAEA-CN-245-450.

5. Sumner, T., et al., 2018. Benchmark specification for FFTF LOFWOS Test #13 IAEA CRP-I32011, ANL-ART-102-Rev. 2, Argonne National Laboratory, USA.

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