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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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Corman, J. C., “Closed Turbine Cycles”, Energy Conversion Alternatives Study (ECAS), General Electric Phase I Final Report, Volume I, Advanced Energy Conversion Systems, Part 2, NASA-CR 134948 Volume I, SRD-76-011, (1976). Delene J. G., Hudson II C. R., “Cost Estimates Guidelines for Advanced Nuclear Power Technologies”, ORNL/TM-10071/R3, May, (1993). Dewson S. J., Thonon B., “The Development of High Efficiency Heat Exchangers for Helium Gas Cooled Reactors”, International Congress on Advanced Nuclear Power Plants (ICAPP ‘03), Cordoba, Spain, May 4-7, (2003.). Dewson S. J., Grady C., HEATRICTM Workshop at MIT, Cambridge, Ma, U.S.A., October 2nd, (2003). Diehl H., Bodman E., “Alloy 800 Specifications in Compliance with Component Requirements”, Journal of Nuclear Materials, 171, pp. 63-70, (1990). Dievot J. P., “The Sodium-COB2B Fast Breeder Reactor Concept”, International Conference on Sodium Technology and Large Fast Reactor Design, Argonne National Laboratory, Argonne, Illinois, November 7-9, (1968). Dostal V., Todreas N. E., Hejzlar P., Kazimi M. S., “Power Conversion Cycle Selection for the LBE Cooled Reactor with Forced Circulation”, MIT-ANP-TR-085, February, (2001). Dostal V., Driscoll M. J., P. Hejzlar and N. E. Todreas, “COB2B Brayton Cycle design and optimization”, MIT-ANP-TR-090, November, (2002). Feher E. G., “Supercritical Thermodynamic Cycles for External and Internal Combustion Engines”, Astropower, Inc. Engineering Report, May, (1962). Feher E. G., “The Supercritical Thermodynamic Power Cycle”, Douglas Paper No. 4348, presented to the IECEC, Miami Beach, Florida, August 13-17, (1967). PP 300

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