Simulation of neutron-physical processes in the surface layer of a fuel kernel

Author:

Andrianov A. N.,Baranov V. G.,Tikhomirov G. V.,Khlunov A. V.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear Energy and Engineering

Reference8 articles.

1. J. Piron, B. Bordin, G. Geoffroy, et al. “Fuel microstructure and RIM effect at high burnup,” in: Proceedings of International Topical Meeting on Light Water Reactor Fuel Performance, Florida, USA, April 17–21, 1994, pp. 321–327.

2. A. S. Shcheglov, V. D. Sidorenko, V. N. Proselkov, et al., “Formation and development of a surface layer in a VVER-440 fuel kernel,” At. Énerg., 80, No. 3, 221–223 (1996).

3. S. Yu. Kurchatov, V. V. Likhanskii, A. A. Sorokin, and O. V. Khoruzhii, “Simulation, using the RTOP code, of the radial profiles of heat release and accumulation of plutonium isotopes in high burnup UO2 fuel,” At. Énerg., 92, No. 4, 317–324 (2002).

4. V. V. Likhanskii, O. V. Oruzhii, A. A. Sorokin, et al., “Development of a physical model of microstructural changes in UO2 fuel with high burnup (model of the formation of an edge layer),” TRINITI Report No. GR.01.20.02.10135, Inv. No. 10/NIR-5638, November 28, 2003.

5. SCALE: A Modular Code System for Performing Standardize Computer Analyses for Licensing Evaluation, ORNL/NUGER/CSD-2/R4 (1993).

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