Design method for s-CO2 gas turbine power plants

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[29] H. Yamaguchi, X. Zhang, K. Fujima, M. Enomoto, and N. Sawada, “Solar Energy Pow- ered Rankine Cycle Using Supercritical CO2,” Applied Thermal Engineering, vol. 26, pp. 2345–2354, 2006. [30] D. Chapman and D. Arias, “An Assessment of the Supercritical Carbon Dioxide Cycle for Use in a Solar Parabolic Trough Power Plant„” in Supercritical CO2 Power Cycle Symposium, 2009. [31] C. Turchi and Z. Ma, “Advanced Supercritical Carbon Dioxide Power Cycle Configura- tions for Use in Concentrating Solar Power System,” in Supercritical CO2 Power Cycle Symposium, 2011. [32] C. Turchi, “Supercritical CO2 for Application in Concentrating Solar Power Systems,” in Supercritical CO2 Power Cycle Symposium, 2009. [33] S. Wright, T. Conboy, and G. Rochau, “Overview of Supercritical CO2 Power Cycle Development at Sandia National Laboratories,” in 2011 University Turbine Systems Re- search Workshop, 2011. [34] D. Howard, “The s-CO2 Brayton Cycle Integrated System Test (IST),” in Supercritical CO2 Power Cycle Symposium, 2009. [35] K. Rahner and M. Hexemer, “Application of Supercritical CO2 Brayton Cycle Integrated System Test (IST), TRACE Model to Initial Turbomachinery and Brayton Loop Test- ing,” in Supercritical CO2 Power Cycle Symposium, 2011. [36] W. S. Jeong, J. I. Lee, and Y. H. Jeong, “Potential Improvements of Supercritical Re- compression CO2 Brayton Cycle by Mixing Other Gases for Power Conversion System of a SFR,” Nuclear Engineering and Design, vol. 241, pp. 2128 – 2137, 2011. [37] Y. Gong, N. Carstens, M. Driscoll, and I. Matthews, “Analysis of Radial Compressor Options for Supercritical CO2 Power Conversion Cycles,” tech. rep., MIT Department of Nuclear Science and Engineering, 2006. [38] R. Pecknic and P. Colonna, “Accurate CFD Analysis of a Radial Compressor Operating with Supercritical CO2,” in Supercritical CO2 Power Cycle Symposium, 2011. [39] I. H. Kim and H. C. No, “Physical Model Development and Optimal Design of PCHE for Intermediate Heat Exchangers in HTGRs,” Nuclear Engineering and Design, vol. 243, pp. 243 – 250, 2012. [40] A. Kruizenga, M. Anderson, R. Fatima, M. Corradini, A. Towne, and D. Ranjan, “Heat Transfer of Supercritical Carbon Dioxide in Printed Circuit Heat Exchanger Geometries,” ASME Conference Proceedings, vol. 2010, pp. 653–661, 2010. [41] Q. Li, G. Flamant, X. Yuan, P. Neveu, and L. Luo, “Compact Heat Exchangers: A Review and Future Applications for a New Generation of High Temperature Solar Re- ceivers,” Renewable and Sustainable Energy Reviews, vol. 15, pp. 4855 – 4875, 2011. [42] T. L. Ngo, Y. Kato, K. Nikitin, and T. Ishizuka, “Heat transfer and Pressure Drop Correlations of Microchannel Heat Exchangers with S-Shaped and Zigzag Fins for Carbon Dioxide Cycles,” Experimental Thermal and Fluid Science, vol. 32, pp. 560 – 570, 2007. Master of Science Thesis J.S. Bahamonde Noriega 99

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