Page 31 - Demo
P. 31

 [2] S. C. Chetal et al., “The design of the Prototype Fast Breeder Reactor,” Nucl. Eng. Des., vol. 236, no. 7–8, pp. 852–860, 2006.
[3] R. J. Sheu, C. H. Chang, C. C. Chao, and Y.-W. H. Liu, “Depletion analysis on long-term operation of the conceptual Molten Salt Actinide Recycler & Transmuter (MOSART) by using a special sequence based on SCALE6/TRITON,” Ann. Nucl. Energy, 2013.
[4] D. Zhang, L. Liu, M. Liu, R. Xu, C. Gong, and S. Qiu, “Neutronics/Thermal-hydraulics Coupling Analysis for the Liquid-Fuel MOSART Concept,” in Energy Procedia, 2017.
[5] C. Rubbia et al., “Conceptual design of a fast neutron operated high power energy amplifier,” 1995.
[6] V. Gulik and A. H. Tkaczyk, “Cost optimization of ADS design: Comparative study of externally driven heterogeneous and homogeneous two-zone subcritical reactor systems,” Nucl. Eng. Des., vol. 270, pp. 133–142, 2014.
[7] A. V. Anikeev, “Optimisation of the neutron source based on gas dynamic trap for transmutation of radioactive wastes,” in AIP Conference Proceedings, 2012.
[8] INTERNATIONAL ATOMIC ENERGY AGENCY, Implications of Partitioning and Transmutation in Radioactive Waste Management, no. 435. Vienna: INTERNATIONAL ATOMIC ENERGY AGENCY, 2004.
[9] L. H. Baetsle and others, “Partitioning and transmutation in a strategic perspective,” Euradwaste, vol. 99, pp. 138–150, 2000.
[10] S. Gales, “Nuclear Energy and Waste Transmutation with High Power Accelerator and Laser Systems.” [Online]. Available: https://indico.cern.ch/event/617648/contributions/2517094/attachments/1442136/2220662 /18_GALES_IZEST-Talk-Nuclear-Transmutation-040417.pdf. [Accessed: 22-Apr-2018].


























































































   29   30   31   32   33