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Article type: Research Article
Authors: Bznuni, S.A.a; 1 | Khudaverdyan, A.H.a | Zhamkochyan, V.M.a | Barashenkov, V.S.b | Sosnin, A.N.b | Polanski, A.c
Affiliations: [a] Yerevan State University, Yerevan, 375049, 1 Alex Manoogian, Armenia. E-mail: [email protected], [email protected] | [b] Joint Institute for Nuclear Research, Dubna, 141980, Russia | [c] Soltan Institute for Nuclear Studies, 05-400 Otwock-Swierk, Poland
Correspondence: [1] The address for manuscript correspondence; S. A. Bznuni, LIT, JINR, Dubna, Moscow region, 141980, Russia. E-mail: [email protected], [email protected]. Fax: (096-21) 65145. Tel: (09621) 67548.
Abstract: The properties of an accelerator driven subcritical bireactor electronuclear system composed of the main thermal neutron reactor constructed analogous to the core of the VVER-1000 and a booster–reactor, which is constructed similar to the core of the fast reactor BN-350, are investigated. It is shown by Monte Carlo simulation that such a system is a safe energy source (keff=0.94÷0.97) and is capable of transmutting radioactive waste (neutron flux density in the thermal core is 1014 n·cm−2·s−1, in the fast core −5.31·1015 n·cm−2·s−1 if the beam current of the proton accelerator is I=5.3 mA at Keff=0.98) at the contemporary technically available level of accelerator engineering. The heat production and beam current are calculated for the system with various levels of subcriticality. The suggested configuration of the “cascade” bireactor system essentially reduces the requirements on the accelerator current and the proton beam energy.
Keywords: Mathematical modeling, Monte Carlo simulation, Accelerator driven systems, Internuclear cascade, Nuclear transmutation
DOI: 10.3233/JCM-2002-21-204
Journal: Journal of Computational Methods in Sciences and Engineering, vol. 2, no. 1-2, pp. 21-29, 2002
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