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By M Khurram Khan; L W Townsend; Marc V Berte; Joe McConn; Wesley Williams; All authors

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Additional info for DESIGN AND LAYOUT CONCEPTS FOR COMPACT, FACTORY-PRODUCED, TRANSPORTABLE, GENERATION IV REACTOR SYSTEMS

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Flad, “Neutron Kinetics Development of the SIMMER-III Safety Code for ADS Applications,” 3rd International Conference on Accelerator Driven Transmutation Tecnologies and Applications, Praha-Czech Republic, June 7-11, 1999 15. Georgy Toshinsky, “Email Communications,” (September-November, 2000) 16. I. 39-44, Orlando, Florida, USA, June 1-5, 1997. 17. F. I. I. Toshinsky et al. "Use of lead-bismuth coolant in nuclear reactors and accelerator-driven systems", Nuclear Engineering and Design, 173, pp.

The SuperPRISM modular LMR plant is composed of one or more power blocks, each of which couple to a 1000 MWt nuclear steam supply system (NSSS) which can operate independently, but they feed steam into a single superheat turbine generator system rated at 825 MWe (net). The core inlet temperature is 700o F (370 C), and the core outlet temperature is 950o F (510 C). Each reactor module is rated at 380 MWe, and the overall plant efficiency is estimated at 38 % with an availability factor of 93 %. The S-PRISM reactor vessel is made of 5 cm thick 316 SS.

April 20-6, 2000, Baltimore, MD. USA. 35. E. General Electric Innovative Liquid Metal Reactor Plant Concept PRISM. Fast Breeder Reactors: Experience and Trends. Proceedings of an International Symposium Organized by the International Atomic Energy Agency Held in Lyons, 22-28 July 1985. Volume 2. p443-450. 36. Chang, Yoon I. Progress and Status of the Integral Fast Reactor (IFR) Development Program. p506-509. Proceedings of the American Power Conference. 37. , Burris, L. Waters, C. Integral Fast Reactor Shows Its Mettle.

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DESIGN AND LAYOUT CONCEPTS FOR COMPACT, FACTORY-PRODUCED, TRANSPORTABLE, GENERATION IV REACTOR SYSTEMS by M Khurram Khan; L W Townsend; Marc V Berte; Joe McConn; Wesley Williams; All authors


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