Radial Compressor Options for Supercritical CO2 Power Conversion Cycles

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Radial Compressor Options for Supercritical CO2 Power Conversion Cycles ( radial-compressor-options-supercritical-co2-power-conversion )

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Chapter 6 discusses hybrid radial-axial machines, which represent a compromise between pure radial and pure axial devices. Finally, Chapter 7 summarizes our findings, including recommendations for the next steps forward. 1.4 References for Chapter 1 1.1 V. Dostal, P. Hejzlar, M.J. Driscoll, “High Performance Supercritical Carbon Dioxide Cycle for Next Generation Reactors”, ICAPP ’06, Paper 6307, Reno, NV, June 4-8, 2006 1.2 V. Dostal, P. Hejzlar, M.J. Driscoll, “High Performance Supercritical Carbon Dioxide Cycle for Next Generation Nuclear Reactors”, Nuclear Technology, Vol. 154, No.3, June 2006 1.3 V. Dostal, P. Hejzlar, M.J. Driscoll, “The Supercritical Carbon Dioxide Power Cycle: Comparison to Other Advanced Power Cycles”, Nuclear Technology, Vol. 154., No.3, June 2006 1.4 Yong Wang, G.R. Guenette. P. Hejzlar, M.J. Driscoll, “Aerodynamic Design of Turbomachinery for 300 MWe Supercritical Carbon Dioxide Brayton Power Conversion System”, MIT-GFR-022, March 2005 1.5 Yifang Gong, N.A. Carstens, M.J. Driscoll, “Supercritical CO2 Cycle Main Compressor Design and Analysis Studies”, MIT-GFR-028, Sept. 2005 1.6 H. Funmilayo, M.J. Driscoll, Y. Gong, G. R. Guenette, “Design of Small Scale Supercritical CO2 Brayton Cycle Experiment, Including Main Compressor Test Capability”, MIT-GFR-029, August 15, 2005 1.7 Y. Wang, V. Dostal, P. Hejzlar, “Turbine Design for Supercritical CO2 Brayton Cycle”, Trans. Am. Nucl. Soc., Vol, 89, Proc. of GLOBAL ’03, New Orleans, LA, Nov. 16-21, 2003 1.8 Y. Wang, G.R.Guenette, P. Hejzlar, M.J. Driscoll, “Compressor Design for the Supercritical CO2 Brayton Cycle”, Proc. of 2nd Int. Energy Conversion Conference, Providence RI, 16-19 Aug. 2004 2

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