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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Klins M. A., “UCarbon Dioxide FloodingU”, D. Reidel Publishing Company, Holland, (1984). Kumar P., Tourlidakis A., Pilidis P., “Generation and Control of Electricity in HTGR Helium Turbine Plant”, Proceedings of ICONE 10, 10th International Conference on Nuclear Engineering, Arlington, VA, April 14-18, (2002). Livingston, R. S., Lead Director, Power Generation Pacific Gas and Electric Company, personal communication, MIT, June, (2002). Moisseytsev A. V., Sienicki J. J., Wade D. C., “Turbine Design for a Supercritical Carbon Dioxide Gas Turbine Brayton Cycle”, International Congress on Advanced Nuclear Power Plants (ICAPP ‘03), Cordoba, Spain, May 4-7, (2003.). Muto Y., Nitawaka T., Kato Y., “Comparative Design Study of Carbon Dioxide Gas Turbine and Helium Turbine for HTGR Power Plant”, International Congress on Advanced Nuclear Power Plants (ICAPP ‘03), Cordoba, Spain, May 4-7, (2003.). Oh C., “Development of a Supercritical Carbon Dioxide Brayton Cycle: Improving PBR Efficiency and Testing Material Compatibility”, Nuclear Energy Research Initiative, Proposal Number 2002-190, (2002). Oka, Y., S. Koshizuka S., “Design Concept of Once-Through Cycle Supercritical- Pressure Light Water Cooled Reactor”, Proceedings of The First International Symposium on Supercritical Water-cooled Reactors, Design and Technology, The University of Tokyo, Japan, November 6 – 9, (2000). Olsen D. A., “Heat Transfer of Supercritical Carbon Dioxide Flowing in a Cooled Horizontal Tube”, NISTIR 6496, May, (2000). Oyakawa K., Shinzato T., Mabuchi I., “The Effect of the Channel Width on Heat Transfer Augmentation in a Sinusoidal Wave Channel” JSME International Journal, Series II, Vol. 32, No.3, (1989). 302 PP

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