Advanced Nuclear Power Technology Program A Supercritical Carbon Dioxide Cycle for Next Generation Nuclear Reactors

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Advanced Nuclear Power Technology Program A Supercritical Carbon Dioxide Cycle for Next Generation Nuclear Reactors ( advanced-nuclear-power-technology-program-supercritical-carb )

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Francois G., “Gas-cooled Fast Reactor, Conception & Preliminary Design of Primary Circuit”, 3rd CEA/ANL Technical Workshop on I-NERI GFR Project, Cadarache, October 6-8, (2003). GCRA, “Modular High Temperature Gas-cooled Reactor Commercialization and Generation Cost Estimates”, HTGR-90365, August, (1993). Gezelius K., GFR group progress report, October, (2003). Gokhstein D. P., “Use of Carbon Dioxide as a Heat Carrier and Working Substance in Atomic Power Station”, Soviet Atomic Energy, 26, No. 4, April, (1969). Gokhstein D. P, Verkhivker G. P., “Future Design of Thermal Power Stations Operating on Carbon Dioxide”, Thermal Engineering, April, pp. 36-38, (1971). Hesselgreaves, J., E., “Compact Heat Exchangers, Selection, Design and Operation”, 1st edition, Pergamon, (2001). Hofman J. R., Feher G. E., “150 kwe Supercritical Closed Cycle System”, ASME paper No. 70-GT-89, (1970). Idelchik I. E., “UHandbook of Hydraulic ResistanceU”, Begell House, New York, (1996). Kato, Y., Nitawaki T, Yoshizawa Y., “A Carbon Dioxide Partial Condensation Direct Cycle For Advanced Gas Cooled Fast and Thermal Reactors”, Global 2001, Paris September 9-13, (2001). Kato, Y., T. Nitawaki, Y. Muto, “Comparison of Cycle Efficiency, Turbine Efficiency, and Recuperator Heat Transfer Surface Area Between Direct Cycles of Carbon Dioxide and Helium”, 1st International Topical Meeting on High Temperature Reactor Technology (HTR), Petten, The Netherlands, April 22-24, (2002). Kays, W. M., A. L. London, “UCompact Heat ExchangersU”, 3rd edition, McGraw-Hill, Inc., New York, (1984). PP 301

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