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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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Todreas, N. and E., Kazimi, M., S., “Nuclear Systems I”, 3rd edition, Taylor & Francis, PP Wang, C., Ballinger R. G., Stahle P. W., “Design of a Power Conversion System for an Indirect Cycle, Helium Cooled Pebble Bed Reactor System”, 1st International Topical Meeting on High Temperature Reactor Technology (HTR), Petten, The Netherlands, April 22-24, (2002). Watzel, G. V. P., “Sind COB2B-Gasturbinenprozesse fur einen Schnellen Natriumgekuhlten Brutreaktor wirtschaftlich?”, Brenstoff-Warme-Kraft, 23 No. 9, pp. 395-400, September, (1971). Xinglong Y., “Dynamic Analysis and Control System Design for an Advanced Nuclear Gas Turbine Power Plant”, MIT PhD. Thesis, (1990). Yan, X. L., Lidsky L. M., “Design of Closed-Cycle Helium Turbine Nuclear Power Plants”, ASME paper 93-GT-196, International Gas Turbine and Aeroengine Congress and Exposition, Cincinnati, Ohio, May 24-27, (1993). Yildiz B., “Nuclear Energy Options for Hydrogen and Hydrogen-Based Liquid Fuels Production”, MIT-NES-TR-001, September, (2003). Wang Y., Dostal V., Hejzlar P., “Turbine Design for Supercritical COB2B Brayton Cycle”, Proceedings of Global 2003 Conference, New Orleans, November 16-20, (2003). Williams W., Hejzlar P, Driscoll M. J., Lee W-J., Saha P., “Analysis of a Convection Loop for GFR Post-LOCA Decay Heat Removal from a Block-Type Core”, MIT-ANP- TR-095, March, (2003). U U New York, (2000). 304

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