1. International Atomic Energy Agency. Status and trends in spent fuel and radioactive waste management. IAEA nuclear energy series: NW-T-1.14. Vienna, 2018. Available at: https://www-pub.iaea.org/MTCD/Publications/PDF/P1799_web.pdf
2. Ventcel’ E. S. Operation Research. Moscow, Nauka Publ., 1972. 552 p. (in Russian).
3. Gorbacheva N. V., Beresneva N. V., Kulich N. V., Skurat V. V. Verification and use of a set of mathematical programs for assessing radioactivity reserves to ensure the safety of nuclear installations at the NP site. Obespechenie bezopasnosti AES s VVER: materialy 6-j Mezhdunar. nauch.-tekhn. konf. [Ensuring the Safety of Nuclear Power Plants with WWER: Reports of the 6th International Scientific and Technical Conference]. Podol’sk, 2009. Available at: https://gosatomnadzor.mchs.gov.by/upload/iblock/a76/npa-yrb-1.pdf (in Russian).
4. Gorbacheva N.V., Kulich N. V., Korcheva Yu. A.Calculated studies of radiotoxicity and specific activity of irradiated deep burn WWER-1200 fuel. Yadernye tekhnologii XXI veka: doklady VI Mezhdunar. konf. [Nuclear Technologies of the XXI century: Reports of the 6th International Conference]. Minsk, Pravo i ekonomika Publ., 2016, pp. 79–88 (in Russian).
5. Serebryanyi G. S. Radiation and thermal characteristics of spent nuclear fuel of the WWER-1200 reactor. Atomnaya energetika, yadernye i radiacionnye tekhnologii XXI veka: doklady VII Mezhdunar. konfer. [Nuclear Energy, nuclear and radiation technologies of the XXI Century: Reports of the 7th International Conference]. Minsk, Pravo i ekonomika Publ., 2018, pp. 63–89 (in Russian).