Development of a Supercritical Carbon Dioxide Brayton Cycle: Improving PBR Efficiency and Testing Material Compatibility

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Development of a Supercritical Carbon Dioxide Brayton Cycle: Improving PBR Efficiency and Testing Material Compatibility ( development-supercritical-carbon-dioxide-brayton-cycle-impro )

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References Apspen Plus User’s Manual, Aspentech Company, 2001. Forsberg, C.W, P.F. Peterson, and L. Ott, The Advanced High-Temperature Reactor for Producing Hydrogen to Manufacture Liquid Fuels,” ANES Paper, Miami Beach, FL., 2004. GPSA Data Book, 11th Edition, Gas Processors Suppliers Association, 1998. Knapp H., “Vapor-Liquid Equilibria for Mixtures of Low Boiling Substances,” Chemistry Data Series, Vol. VI, DECHEMA, 1989. HYSYS User’s Manual, Aspentech Company, 2001. Macdonald, P.E., “NGNP Preliminary Point Design – Results of the Initial Neutronics and Thermal-Hydraulic Assessments, INEEL/EXT-03-00870, July 2003. Oh, C.H and R.L. Moore, “Parametric Investigation of Brayton Cycle for High Temperature Gas-Cooled Reactors, HT-FED2004-56576, 2004 ASME Heat Transfer / Fluids Engineering Summer Conference, Charlotte, NC. July 11-15, 2004. Peng, D.Y and D.B. Robison, “A Two Constant Equation of State,” I.E.C. Fundamentals, 15, 1976, pp.59-64 Perry, R.H, D.W. Green, and J.O. Maloney, Perry’s Chemical Engineers’ Handbook, 7th Edition, McGraw-Hill, 1997. Peterson, P., “Multiple-Reheat Brayton Cycles for Nuclear Power Conversion with Molten Coolants,” Nucl. Tech., 144, 2003, pp. 279-288. Reid, R.C., J.M. Prausnitz, and T.K. Sherwood, 1977, The Properties of Gases and Liquids, Fourth Edition, McGraw-Hill Book Company, New York. Reid, R.C., J.M. Prausnitz, and B.E. Poling, 1987, The Properties of Gases and Liquids, Third Edition, McGraw-Hill Book Company, New York. Rivken, S.L, 1988, Thermodynamic Properties of Gases, Fourth Edition (Revised), Hemisphere Publishing Corporation. Yan, X, T. Takakazu, S. Takada, K. Kunitomi, I. Minatsuki, and Y. Mizokami, “Cost and Performance Design Approach for GTHTR300 Power Conversion System,” Nucl. Eng. & Des., 226, 2003, pp. 351-373. 28

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