Design method for s-CO2 gas turbine power plants

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100 Bibliography [43] U.S. Department of Energy, “Concentrating Solar Power SunShot Research and Devel- opment Awards,” 2012. [44] MATLAB, version 7.10.0 (R2010a). The MathWorks Inc., 2010. [45] P. Colonna and T. van der Stelt, “FluidProp: A Program for the Estimation of Thermo- physical Properties of Fluids,” 2005. [46] R. Span and W. Wagner, “A New Equation of State for Carbon Dioxide Covering the Fluid Region from the Triple-Point Temperature to 1100 K at Pressures up to 800 MPa,” Journal of Physical and Chemical Reference Data, vol. 25, pp. 1509–1596, 1996. [47] J. van Buijtenen and W. Visser, Gas Turbines. NLR, DeltaConsult, 2007. [48] D. Seborg, T. Edgar, and D. Mellichamp, Process Dynamics and Control. John Wiley & Sons, Inc., 2004. [49] R. Schleicher, A. Raffray, and C. Wong, “An Assesment of the Brayton Cycle for High Performance Power Plants,” tech. rep., General Atomics, 2000. [50] I. Dincer and M. Rosen, Exergy: Energy, Environment and Sustainable Development. Elsevier Science, 2007. [51] Defense and Security Intelligence and Analysis: IHS Jane’s, “Jane’s Aero-Engines-Rolls- Royce Trent 1000,” 2012. [52] J. Hesselgraves, Compact Heat Exchangers. John Wiley & Sons, Inc., 2004. [53] K. Nikitin, Y. Kato, and L. Ngo, “Printed Circuit Heat Exchanger Thermal and Hy- draulic Performance in Supercritical CO2 Experimental Loop,” International Jtitlournal of Refrigeration, vol. 29, pp. 807 – 814, 2006. [54] R. Sha and D. Sekulic, Fundamentals of Heat Exchanger Design. John Wiley & sons, 2003. [55] AK Steel Corporation, “Stainless 316/316L Steel Product Data Sheet,” 2007. [56] J.vanMeter,“ExperimentalInvestigationofaPCHEUsingSupercriticalCarbonDioxide and Water as Heat Transfer Media,” Master’s thesis, Kansas State University, 2008. [57] Allegheny Technologies, Inc., “ATI Titanium Grade 5 Technical Data Sheet,” 2012. [58] ASM Aerospace Specification Metals, Inc., “ASM Titanium Grade 5 Technical Data Sheet,” 2012. [59] T. Ishizuka, Y. Kato, Y. Muto, K. Nikitin, N. Lam, and H. Hashimoto, “Thermal- Hydraulic Characteristics of a Printed Circuit Heat Exchanger in a Supercritical CO2 loop,” in NURETH-11, 11th Intl. Topical Meeting on Nuclear Reactor Thermal- Hydraulics, 2005. [60] J. Pettersen, R. Rieberer, and S. Tollak, “Heat Transfer and Pressure Drop for Flow of Supercritical and Subcritical CO2 in Microchannels,” tech. rep., Norwegian University of Science and Technology, 2000. [61] M. Carlson, A. Kruizenga, M. Anderson, and M. Corradini, “Measurements of Heat Transfer and Pressure Drop Characteristics of Supercritical Carbon Dioxide Flowing in J.S. Bahamonde Noriega Master of Science Thesis

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